US20150351749A1 - Needle Cartridge with Moveable Cover - Google Patents

Needle Cartridge with Moveable Cover Download PDF

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Publication number
US20150351749A1
US20150351749A1 US14/298,072 US201414298072A US2015351749A1 US 20150351749 A1 US20150351749 A1 US 20150351749A1 US 201414298072 A US201414298072 A US 201414298072A US 2015351749 A1 US2015351749 A1 US 2015351749A1
Authority
US
United States
Prior art keywords
needle
cartridge
cover
track
circular path
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US14/298,072
Inventor
David T. Martin
Andrew C. Deck
William J. White
Jerome R. Morgan
Ryan C. Yang
Michael D. Cronin
Mark J. Bookbinder
Daniel J. Mumaw
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Cilag GmbH International
Original Assignee
Ethicon Endo Surgery LLC
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ethicon Endo Surgery LLC filed Critical Ethicon Endo Surgery LLC
Priority to US14/298,056 priority Critical patent/US9788830B2/en
Priority to US14/298,072 priority patent/US20150351749A1/en
Priority claimed from US14/298,038 external-priority patent/US9375212B2/en
Assigned to ETHICON ENDO-SURGERY, INC. reassignment ETHICON ENDO-SURGERY, INC. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: MORGAN, JEROME R., YANG, Ryan C., BOOKBINDER, MARK J., CRONIN, MICHAEL D., WHITE, WILLIAM J., DECK, Andrew C., MARTIN, DAVID T., MUMAW, DANIEL J.
Priority to US14/600,486 priority patent/US20150133967A1/en
Priority to RU2016152144A priority patent/RU2016152144A/en
Priority to JP2016571290A priority patent/JP2017516598A/en
Priority to EP15726845.9A priority patent/EP3151754B8/en
Priority to BR112016028530A priority patent/BR112016028530A2/en
Priority to PCT/US2015/031911 priority patent/WO2015187379A1/en
Priority to AU2015271146A priority patent/AU2015271146A1/en
Priority to CN201580041926.8A priority patent/CN106659495A/en
Priority to RU2017102369A priority patent/RU2017102369A/en
Publication of US20150351749A1 publication Critical patent/US20150351749A1/en
Assigned to ETHICON ENDO-SURGERY, LLC reassignment ETHICON ENDO-SURGERY, LLC ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: ETHICON ENDO-SURGERY, INC.
Priority to AU2016273870A priority patent/AU2016273870B2/en
Priority to JP2017036215A priority patent/JP2017109142A/en
Assigned to ETHICON LLC reassignment ETHICON LLC CHANGE OF NAME (SEE DOCUMENT FOR DETAILS). Assignors: ETHICON ENDO-SURGERY, LLC
Priority to US15/970,191 priority patent/US20180249995A1/en
Assigned to CILAG GMBH INTERNATIONAL reassignment CILAG GMBH INTERNATIONAL ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: ETHICON LLC
Abandoned legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/04Surgical instruments, devices or methods, e.g. tourniquets for suturing wounds; Holders or packages for needles or suture materials
    • A61B17/0469Suturing instruments for use in minimally invasive surgery, e.g. endoscopic surgery
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/04Surgical instruments, devices or methods, e.g. tourniquets for suturing wounds; Holders or packages for needles or suture materials
    • A61B17/0482Needle or suture guides
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/04Surgical instruments, devices or methods, e.g. tourniquets for suturing wounds; Holders or packages for needles or suture materials
    • A61B17/06Needles ; Sutures; Needle-suture combinations; Holders or packages for needles or suture materials
    • A61B17/06114Packages or dispensers for needles or sutures
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/04Surgical instruments, devices or methods, e.g. tourniquets for suturing wounds; Holders or packages for needles or suture materials
    • A61B17/06Needles ; Sutures; Needle-suture combinations; Holders or packages for needles or suture materials
    • A61B17/06114Packages or dispensers for needles or sutures
    • A61B17/06133Packages or dispensers for needles or sutures of parallelepipedal shape, e.g. made of rectangular or slightly oval panels
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/04Surgical instruments, devices or methods, e.g. tourniquets for suturing wounds; Holders or packages for needles or suture materials
    • A61B17/06Needles ; Sutures; Needle-suture combinations; Holders or packages for needles or suture materials
    • A61B17/062Needle manipulators
    • A61B17/0625Needle manipulators the needle being specially adapted to interact with the manipulator, e.g. being ridged to snap fit in a hole of the manipulator
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B2017/00367Details of actuation of instruments, e.g. relations between pushing buttons, or the like, and activation of the tool, working tip, or the like
    • A61B2017/00407Ratchet means
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B2017/0046Surgical instruments, devices or methods, e.g. tourniquets with a releasable handle; with handle and operating part separable
    • A61B2017/00473Distal part, e.g. tip or head
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/04Surgical instruments, devices or methods, e.g. tourniquets for suturing wounds; Holders or packages for needles or suture materials
    • A61B17/0469Suturing instruments for use in minimally invasive surgery, e.g. endoscopic surgery
    • A61B2017/047Suturing instruments for use in minimally invasive surgery, e.g. endoscopic surgery having at least one proximally pointing needle located at the distal end of the instrument, e.g. for suturing trocar puncture wounds starting from inside the body
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/04Surgical instruments, devices or methods, e.g. tourniquets for suturing wounds; Holders or packages for needles or suture materials
    • A61B17/0469Suturing instruments for use in minimally invasive surgery, e.g. endoscopic surgery
    • A61B2017/0479Packages or dispensers for MIS suturing instruments
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/04Surgical instruments, devices or methods, e.g. tourniquets for suturing wounds; Holders or packages for needles or suture materials
    • A61B17/06Needles ; Sutures; Needle-suture combinations; Holders or packages for needles or suture materials
    • A61B17/06066Needles, e.g. needle tip configurations
    • A61B2017/06071Needles, e.g. needle tip configurations with an abrupt angle formed between two adjacent sections
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/04Surgical instruments, devices or methods, e.g. tourniquets for suturing wounds; Holders or packages for needles or suture materials
    • A61B17/06Needles ; Sutures; Needle-suture combinations; Holders or packages for needles or suture materials
    • A61B17/06066Needles, e.g. needle tip configurations
    • A61B2017/0608J-shaped

Definitions

  • the present invention relates in general to surgical devices and procedures, and more particularly to surgical suturing.
  • Sutures are often used in a wide variety of surgical procedures. Manual suturing is typically accomplished by the surgeon using a fine pair of graspers to grab and hold a suture needle, pierce the tissue with the needle, let go of the needle, and regrasp the needle to pull the needle and accompanying suture thread through the tissues to be sutured. Such needles are typically curved with the suture attached to the trailing end of the needle.
  • a variety of automated suturing devices have been attempted to speed the process of suturing and to facilitate fine suturing or suturing during endoscopic, laparoscopic, or arthroscopic surgeries. While automated suturing devices are generally known, no one has previously made or used a surgical suturing device in accordance with the present invention.
  • FIG. 1 depicts a side view of a surgical suturing device
  • FIG. 2A depicts top perspective exploded view of a receiver
  • FIG. 2B depicts bottom perspective exploded view of a receiver
  • FIG. 3A depicts a scaled top perspective view of a cartridge
  • FIG. 3B depicts a scaled bottom perspective view of a cartridge
  • FIG. 4 depicts an exploded view of a cartridge
  • FIG. 5A depicts a perspective view of a transmission for driving a needle at one end of its stroke
  • FIG. 5B depicts a perspective view of a transmission for driving a needle at mid-stroke
  • FIG. 5C depicts a perspective view of a transmission for driving a needle at the other end of its stroke
  • FIG. 6A depicts an outer perspective view of a needle cover
  • FIG. 6B depicts an inner perspective view of a needle cover
  • FIG. 7 depicts a scaled perspective view of a cartridge with a cage in its proximal position
  • FIG. 8 depicts a perspective view of a cartridge
  • FIG. 9 depicts a perspective view of a needle cover
  • FIG. 10 depicts a detailed view of a cleat engaging a trailing end of a needle
  • FIG. 11 depicts a plan view of a needle cover
  • FIG. 12 depicts a perspective view of a cartridge with an opened needle cover
  • FIG. 13 depicts a perspective view of a cartridge with an opened needle cover
  • FIG. 14 depicts a perspective view of a cartridge with an opened needle cover
  • FIG. 15 depicts a perspective view of a cartridge with an opened needle cover.
  • a surgical suturing device comprises an arced needle having a leading end, a trailing end, and a length of suture.
  • a needle driver is operable to drive the needle in a first rotational direction along a circular path.
  • a cleat projects into the circular path and is operable to engage and prevent the needle from rotating in a second rotational direction opposite the first rotational direction. The cleat may project inward into the plane of the circular path.
  • a needle cartridge is adapted to be attached to a receiver on a surgical suturing device.
  • the cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture.
  • a track receives the needle and defines a circular path.
  • a needle driver is operable to rotate the needle along the circular path in a first rotational direction.
  • a cover captures the needle in the track.
  • the cover comprises an outer face, an inner face, and a cleat projecting from the inner face into the track. The cleat is adapted to engage the trailing end of the needle and prevent the needle from rotating in a second rotational direction opposite the first rotational direction.
  • the needle driver may reciprocate between a drive stroke and a return stroke.
  • the drive stroke may rotate the needle about 180 degrees.
  • the cover may comprise two cleats projecting into the track spaced about 180 degrees from one another along the circular path.
  • the cleats may be positioned to be adjacent the trailing end of the needle at the end of the drive strokes.
  • the cleat and cover may be monolithically formed.
  • the cleat may dimensionally interfere with the needle in the needle track.
  • the cover may resiliently deflect to accommodate the interference.
  • the upper face of the cover may comprise reliefs aligned with the cleats.
  • the cleat may comprise a ramped leading face and a stepped trailing face adapted to engage the trailing end of the needle.
  • a surgical suturing device comprises an arced needle comprising a leading end, a trailing end, and a length of suture connected to the needle.
  • a needle driver is adapted to engage and rotate the needle in a circular path in a first rotational direction.
  • a means engages the needle and prevents the needle from rotating in a second rotational direction opposite of the first rotational direction.
  • a needle cartridge is adapted to be attached to a receiver on a surgical suturing device.
  • the cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture.
  • a body has a track receiving the needle and defining a circular path.
  • a needle driver is operable to rotate the needle along the circular path.
  • a cover captures the needle in the track.
  • a cage engages and retains the needle cover against the body. The cage may slide relative the body to disengage with a portion of the cover allowing the cover to deflect and release the needle from the track.
  • a needle cartridge is adapted to be attached to a receiver on a surgical suturing device.
  • the cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture.
  • a body has a pair of distally projecting arms and a track receiving the needle and defining a circular path.
  • a needle driver is operable to rotate the needle along the circular path across the body arms.
  • a cover captures the needle in the track, the cover having a pair of distally projecting arms aligned with the body arms.
  • a cage is slideable relative the body between a distal position where the cage constrains the cover arms against the body arms to capture the needle in the track, and a proximal position where the cage disengages from the cover arms allowing the needle to eject from the track.
  • the body and cover arms may define a generally U-shaped distal end, and the cage may comprise a U-shaped distal end that aligns with the U-shaped distal end when the cage is in its distal position. The cover arms deflect to eject the needle.
  • a needle cartridge is adapted to be attached to a receiver on a surgical suturing device.
  • the cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture.
  • a cartridge body has a track that receives the needle and defining a circular path.
  • a needle driver is operable to rotate the needle along the circular path.
  • a cover is on the body and positioned over the needle in the track. The cover is selectively moveable relative to the body to release the needle from the track.
  • the needle cartridge may further comprise a hinge connecting the cover to the body.
  • the body may have a longitudinal axis and the hinge is oriented normal to the longitudinal axis.
  • the hinge is oriented parallel to the longitudinal axis.
  • the needle cartridge may further comprise a pivot connecting the cover to the body.
  • the cover may rotate about the pivot in a plane parallel with the circular path.
  • the cover may slide laterally relative the body.
  • a needle cartridge is adapted to be attached to a receiver on a surgical suturing device.
  • the cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture.
  • a cartridge body has a track that receives the needle and defining a circular path.
  • a needle driver is operable to rotate the needle along the circular path.
  • a cover is on the body positioned over the needle in the track. The cartridge comprises a means for moving the cover to release the needle from the track.
  • a needle cartridge is adapted to be attached to a receiver on a surgical suturing device.
  • the cartridge comprises a body having a length, a width, and a height. The length is at least twice the width, and the width is less than 3.5 times the height.
  • the cartridge comprises an arced needle and a suture, and a needle driver operable to drive the needle in a circular path. The length may be less than 5 times with width, and the width may be greater than the height.
  • the needle cartridge may further comprise one or more asymmetrical features operable to prevent improper engagement with the receiver.
  • the needle cartridge may further comprise a transmission connecting a rotary input to the needle driver.
  • the needle cartridge may further comprise a step operable to be engaged by a latch tooth on the receiver.
  • the body may further comprise upper and lower faces being generally flat and parallel to one another.
  • a needle cartridge adapted to be attached to a receiver on a surgical suturing device.
  • the cartridge comprises a generally flat upper and lower faces parallel to one another, a proximal end and two distal arms.
  • the cartridge has a length, a width and a height wherein the length is at least twice the width, and the width is less than 3.5 times the height.
  • the cartridge has an arced needle and a suture, and a needle driver operable to drive the needle in a circular path spanning the arms.
  • the length may be less than 5 times with width, and the width may be greater than the height
  • the upper and lower surfaces may be asymmetrical to prevent improper engagement with the receiver.
  • the distal face may be asymmetrical to prevent improper engagement with the receiver.
  • a recessed step on the upper face may be operable to be engaged by a latch tooth on the receiver.
  • a rotary input on the lower face and a transmission may operably connect the rotary input to the needle driver.
  • a needle cartridge is adapted to be attached to a receiver on a surgical suturing device.
  • the cartridge comprises upper and lower faces each being generally flat and parallel to one another.
  • the upper and lower faces are each generally rectangular with a U-shaped distal notch.
  • the upper and lower faces each have a length and a width where the length is at least twice the width.
  • the cartridge has an arced needle and a suture, and a needle driver operable to drive the needle in a circular path parallel with the upper and lower faces and across the U-shaped notch.
  • a transmission operably connects the rotary input on the lower face to the needle driver.
  • FIG. 1 illustrates an embodiment of a surgical suturing device.
  • An elongate shaft ( 20 ) has a proximal end ( 21 ), a distal end ( 22 ), and a longitudinal axis extending therebetween.
  • An actuator ( 10 ) is connected to the proximal end ( 21 ) of the shaft ( 20 ).
  • the actuator ( 10 ) is a manual pistol grip handle; however, a variety of other manual actuators could also be used, including a scissor grip handle, a syringe grip handle, endoscopic rotary knobs, and the like.
  • the actuator ( 10 ) could also take the form of a robotic interface, such as a DAVINCI puck, or a housing comprising gears or pulleys, servomechanisms, and the like.
  • a circular needle applier ( 30 ) is connected to the distal end ( 22 ) of the shaft ( 20 ).
  • the circular needle applier ( 30 ) rotates an arced needle in a circular path enabling a surgeon to selectively apply sutures.
  • the circular needle applier ( 30 ) may be integral with the shaft ( 20 ) and actuator ( 10 ) as a unitary disposable instrument intended for a single surgical procedure.
  • the circular needle applier ( 30 ) may also be integral with the shaft ( 20 ) and actuator ( 10 ) as a reusable instrument.
  • the circular needle applier ( 30 ) may be embodied in a disposable cartridge ( 90 ) and the shaft ( 20 ) may include a receiver ( 50 ) to hold the cartridge ( 90 ).
  • the shaft ( 20 ) and actuator ( 10 ) may also be disposable or reusable.
  • Embodiments with reusable components are intended to be cleaned, sterilized, and reused for a multiple surgical procedures, and may include a flush port ( 18 ) to facilitate cleaning.
  • the preferable life cycle of a reusable instrument is at least 50 operations, more preferably at least 150 operations, and most preferably at least 200 operations.
  • Reusable components may be built using materials that can withstand autoclave sterilization temperatures of at least 135 degrees Celsius, although low temperature materials can also used with low temperature sterilization techniques known in the art.
  • a first input ( 12 ), shown here as a trigger that pivots between opened and closed positions, may be used to selectively actuate the circular needle applier ( 30 ).
  • the trigger may be spring biased to return the trigger to its open position.
  • a second input ( 14 ), shown here as a rotary knob, may be used to selectively articulate the shaft ( 20 ).
  • a third input ( 16 ), shown here as a rotary knob, may be used to selectively rotate the circular needle applier ( 30 ) about the shaft ( 20 ).
  • the number, type, configuration, and operation of the inputs ( 12 , 14 , and 16 ) may vary.
  • FIGS. 2A-B illustrate exploded views of an embodiment of a receiver ( 50 ).
  • the shaft distal end ( 22 ) comprises an articulation joint ( 23 ) and a rotational bearing ( 24 ).
  • the joint ( 23 ) includes a knuckle ( 23 A) that receives pins ( 23 B, C) connected to the bearing supports ( 24 B, C).
  • the pins ( 23 B, C) define the pivoting axis for the joint ( 23 ) enabling the receiver ( 50 ) to articulate left and right relative the shaft ( 20 ).
  • Rods ( 27 A, B) are operably connected to the joint ( 23 ).
  • the rods ( 27 A, B) extend through the shaft ( 20 ), through the knuckle ( 23 A), and connect to pins ( 29 A, B) on the bearing support ( 24 C).
  • the rods ( 27 A, B) are operatively connected to the second input ( 14 ) to alternately push and pull the rods ( 27 A, B). Because the pins ( 29 A, B) are laterally spaced from the pivoting axis, the push and pull action will in turn articulate the receive ( 50 ) about the joint ( 23 ) relative the shaft ( 20 ).
  • the rotational bearing ( 24 ) is positioned distal to the articulation joint ( 23 ).
  • the bearing ( 24 ) includes a circumferential flange ( 24 A) captured between the bearing supports ( 24 B, 24 C) such that the flange ( 24 A) can rotate relative the bearing supports ( 24 B, 24 C) and enabling unbounded rotation of the receiver ( 50 ) relative the shaft ( 20 ).
  • a drive rod ( 28 ) extends through the shaft ( 20 ).
  • the drive rod ( 28 ) comprises a proximal rigid portion ( 28 A) and a distal bendable portion ( 28 B) fixedly connected to one another.
  • the bendable portion ( 28 B) extends through the joint ( 23 ) and through the bearing ( 24 ), and the distal end ( 28 C) is fixedly connected to the mount ( 49 ) on the rack ( 45 ).
  • the rack ( 45 ) reciprocates longitudinally in the lower jaw ( 51 ) with the followers ( 45 A, B, C and D) constrained in tracks ( 55 A, B, C, and D), respectively.
  • the tracks ( 55 A, B, C, and D) open through the lower jaw ( 51 ) providing fluid passages to the internal components within the lower jaw ( 51 ), thus facilitating easier cleaning.
  • a pinion ( 47 ) is mounted to the lower jaw ( 51 ) by the pin ( 46 ) in the rack ( 45 ) such that longitudinal reciprocation of the rack ( 45 ) is translated to rotational reciprocation of the pinion ( 47 ).
  • the key ( 48 ) translates the reciprocating rotation to the transmission in the cartridge ( 90 ), which in turn actuates the circular needle applier ( 30 ).
  • the drive rod ( 28 ) is operatively connected to the first input ( 12 ) and to the third input ( 16 ). Actuation of the first input ( 12 ) will impart axial push and pull loads on the drive rod ( 28 ) to longitudinally reciprocate the rack ( 45 ) and actuate the circular needle applier ( 30 ). Actuation of the third input ( 16 ) will impart a rotational load on the drive rod ( 28 ) thus rotating the receiver ( 50 ) about the bearing ( 24 ) relative to the shaft ( 20 ). Accordingly, a single drive rod ( 28 ) operates to both actuate the circular needle applier ( 30 ) as well as control distal rotation. By consolidating dual functions with a single drive rod ( 28 ), the number of components is reduced, and more space is provided in the shaft ( 20 ), making the device less expensive to manufacture and easier to clean.
  • the receiver ( 50 ) is dimensioned and adapted to receive and hold a disposable cartridge ( 90 ).
  • the receiver has upper and lower jaws ( 56 , 51 ) having a closed position adapted receive and retain the cartridge ( 90 ) and an opened position adapted to release the cartridge.
  • the lower jaw ( 51 ) is stationary and the upper jaw ( 56 ) pivots; however, the arrangement could be reversed, or in an alternative embodiment both jaws ( 56 , 51 ) could pivot.
  • the lower jaw ( 51 ) has two laterally offset longitudinal rails ( 52 ) dimensioned and adapted to receive the cartridge ( 90 ).
  • the rails ( 52 ) help longitudinally align the cartridge ( 90 ) in the receiver ( 50 ) and laterally retain the cartridge ( 90 ) in the jaws ( 51 , 56 ).
  • the upper jaw ( 56 ) pivots relative the lower jaw ( 51 ) about the pin ( 53 ) that is received in the holes ( 57 ).
  • a tooth ( 59 ) is resiliently oriented downward from the upper jaw ( 56 ) toward the lower jaw ( 51 ) with a ramped distal face and a stepped proximal face.
  • the tooth ( 59 ) is dimensioned and adapted to latch with the cartridge ( 90 ) and longitudinally retain the cartridge in the jaws ( 51 , 56 ).
  • the tooth ( 59 ) deflects by virtue of a resilient cantilevered arm extending proximally from the distal end of the upper jaw ( 56 ).
  • the tooth ( 59 ) and cantilevered arm are monolithic with the upper jaw ( 56 ), thus reducing the number of components and moving pieces, making the device less expensive to manufacture and easier to clean.
  • the button ( 60 ) is used to open and close the jaws ( 51 , 56 ). While the button ( 60 ) could be place on or near the actuator ( 10 ), in this embodiment the button ( 60 ) is positioned adjacent the receiver ( 50 ), which eliminates a linkage in the shaft ( 20 ) thus creating space in the shaft ( 20 ) and making the device less expensive and easier to clean.
  • the action of the button ( 60 ) may vary, but in this embodiment the button ( 60 ) pivots relative the lower jaw ( 51 ) about the pin ( 63 ) that is received in hole ( 61 ).
  • the follower ( 62 ) is received by the cam slots ( 54 , 58 ).
  • Pivoting the button ( 60 ) proximally will open the jaws ( 51 , 56 ), while pivoting the jaws distally will close the jaws ( 51 , 56 ).
  • the spring ( 64 ) engages and biases the button ( 60 ) distally.
  • the follower ( 62 ) will drive the cam slot ( 58 ) to open the upper jaw ( 56 ).
  • the spring ( 64 ) will bias the button ( 60 ) distally to close the upper jaw ( 56 ).
  • FIGS. 3A-B illustrate one embodiment of a disposable needle driver cartridge ( 90 ) adapted to be attached to the receiver ( 50 ).
  • the upper and lower faces ( 96 , 91 ) are generally rectangular with a generally U-shaped distal notch.
  • the upper and lower faces ( 96 , 91 ) are generally flat and parallel to one another.
  • the dimensional ratios of the cartridge ( 90 ) may vary based on functional and aesthetic considerations, but in this embodiment the cartridge ( 90 ) is elongate with a length at least 2 times the width, and a width less than 3.5 times the height.
  • the length may be less than 5 times with width, and the width may be greater than 1.0 times the height.
  • the lower face ( 91 ) is adapted to engage the lower jaw ( 51 ) and the upper face ( 96 ) to engage the upper jaw ( 56 ).
  • Asymmetrical features on the cartridge ( 90 ) are operable to prevent improper insertion of the cartridge ( 90 ) into the receiver ( 50 ), but also contribute to the aesthetic appearance of the cartridge ( 90 ).
  • the lower face ( 91 ) has a pair of longitudinal notched shoulders ( 92 ) dimensioned to interface and mate with the rails ( 52 ).
  • the notched shoulders ( 92 ) are shaped as stepped rabbets, but a variety of other aesthetic shapes could also be employed such as chamfers and radii.
  • the upper face ( 96 ) is asymmetrical relative the lower face ( 91 ) and lacks shoulder notches, so the upper face ( 96 ) would interfere with the rails ( 52 ) if the cartridge was inserted upside-down.
  • the geometry of the proximal face ( 98 ) is vertically asymmetrical thus preventing the cartridge ( 90 ) from being inserted upside-down between the jaws ( 51 , 56 ).
  • the proximal face ( 98 ) comprises a curved surface that gently transitions to the upper face ( 96 ), which matches similar geometry in the receiver ( 50 ), while the transition to the lower face ( 91 ) has a tighter radius.
  • a variety of other dimensional ratios and asymmetrical aesthetic geometries could also be employed that could contribute to the visual appearance of the cartridge ( 90 ).
  • the slot ( 95 ) and rotary input ( 94 ) are aligned and dimensioned to receive the key ( 48 ) while the cartridge ( 90 ) is being slid into the receiver ( 50 ).
  • the recessed step ( 99 ) aligns with and receives the tooth ( 59 ) to latch the cartridge ( 90 ) in the receiver ( 50 ).
  • the key ( 48 ) also aligns with rotary input ( 94 ) thereby providing a torsional interface that rotationally couples the pinion ( 47 ) and rotary input ( 94 ).
  • the needle ( 70 ) exits arm ( 93 A) and enters arm ( 93 B).
  • the cage ( 120 ) slides longitudinally on the cartridge ( 90 ) between a distal position (as shown in FIGS. 3A-B ) and a proximal position (as shown in FIG. 7 ).
  • the cage ( 120 ) may be formed from a sheet of metal stamped and bent to shape, but other materials and manufacturing techniques could also be used.
  • a pair of laterally space legs ( 122 A, B) each include a flange ( 127 A, B) that engages and slides in the stepped notches ( 87 A, B).
  • a bridge ( 121 ) extends between the legs ( 122 A, B) that engages and retains the needle cover ( 100 ) against the cartridge ( 90 ).
  • the bridge ( 121 ) includes a distal U-shaped notch aligned with the arms ( 93 A, B).
  • the legs ( 122 A, B) each include an opening ( 123 ) that receives a lateral protrusion ( 83 ) from the cartridge ( 90 ).
  • the protrusions ( 83 ) expand the space in the cartridge ( 90 ) to accommodate the needle and carrier tracks ( 84 , 88 ).
  • the protrusions ( 83 ) each include a distal ramped portion allowing the cage ( 120 ) to slide proximally, and a proximal stepped portion that engages the edge of the openings ( 123 ) preventing the cage ( 120 ) from sliding distally off the cartridge ( 90 ).
  • a recess ( 125 ) is provided on the bridge ( 121 ) into which a surgeon may insert a surgical instrument to push the cage ( 120 ) proximally.
  • the recess ( 125 ) aligns with a longitudinal recess ( 110 ) to facilitate a more secure engagement between the instrument and the recess ( 125 ).
  • a circular hole ( 124 ) extends through each of the legs ( 122 A, B) into which a surgeon may insert a surgical instrument to push the cage ( 120 ) proximally.
  • the shape, size, and configuration of the features may vary from the foregoing.
  • FIG. 4 illustrates an example of a cartridge ( 90 ) comprising a lower body ( 81 ), an upper body ( 82 ), and a needle cover ( 83 ).
  • the needle driver ( 86 ), rotary input ( 94 ), and link ( 85 ) are captured between the lower body ( 81 ) and an upper body ( 82 ).
  • the lower and upper bodies ( 81 , 82 ) are attached to one another using a variety of known techniques, including welds, pins, adhesives, and the like to form the cartridge body.
  • the needle ( 70 ) has a leading end ( 71 ) and a length of suture ( 73 ) extending from the trailing end ( 72 ).
  • the needle ( 70 ) rotates in a circular path defined by the needle track ( 84 ) and between the arms ( 93 A, B).
  • Features ( 74 ) may be provided to facilitate the needle driver ( 86 ) to engage and drive the needle ( 70 ).
  • the needle ( 70 ) is captured in the needle track ( 84 ) by the needle cover ( 83 ).
  • the cage ( 87 ) slides over the cartridge body to attach the needle cover ( 83 ) against the lower body ( 81 ).
  • FIGS. 5A-C illustrate an embodiment of a drive stroke of the transmission in the cartridge ( 90 ) for driving a needle ( 70 ) in a circular path.
  • the needle driver ( 86 ) rides in the carrier track ( 88 ) and extends into the needle track ( 84 ) to engage and drive the needle ( 70 ).
  • a link ( 85 ) connects the rotary input ( 94 ) to the needle driver ( 86 ).
  • FIG. 5A illustrates the needle driver ( 86 ) positioned at one end of its stroke in the carrier track ( 88 ). As shown in FIG. 5B , counterclockwise rotation of the rotary input ( 94 ) will translate the needle driver ( 86 ) clockwise along the carrier track ( 88 ) driving the needle ( 70 ) clockwise.
  • FIGS. 6A-B illustrate an embodiment of a needle cover ( 100 ) having an outer face ( 101 ) and an inner face ( 102 ) that engages the lower body ( 81 ).
  • the arms ( 103 A, B) define a generally U-shaped distal end that aligns with respective arms ( 93 A, B) on the cartridge ( 90 ).
  • Tabs ( 104 A, B) facilitate aligning and laterally stabilizing the arms ( 103 A, B) relative the respective arms ( 93 A, B).
  • Post ( 105 ) facilitates attaching the cover ( 100 ) to the lower body ( 81 ), and may have an interference fit with a mating hole on the lower body ( 81 ).
  • the cover ( 100 ) captures the needle ( 70 ) in the needle track ( 84 ).
  • the medial edge ( 103 C) partially covers the needle track ( 84 ) defining a medial window along the length of needle track ( 84 ) through which the suture may extend out.
  • the window is dimensioned smaller than the thickness of the needle ( 70 ) so as to constrain the needle ( 70 ) in the needle track ( 84 ).
  • Cleats ( 106 A, B) extend from the inner face ( 102 ) into the needle track ( 84 ). While the present embodiment shows the cleats ( 106 A, B) projecting inwardly into the plane of the needle track ( 84 ), cleats may be positioned with alternative orientations, such as from the side walls of the needle track ( 84 ) or from the floor of the needle track ( 84 ). The cleats ( 106 A, B) are positioned so as to be adjacent to the trailing end ( 72 ) of the needle ( 70 ) at the end of the drive stroke.
  • the cleats ( 106 A, B) allow the needle ( 70 ) to rotate during the drive stroke, but engage the trailing end ( 72 ) to prevent the needle ( 70 ) from rotating in the opposite direction during the return stroke. Accordingly, the needle ( 70 ) rotates in only one direction with the leading end ( 71 ) going forward.
  • the cleats ( 106 A, B) may dimensionally interfere with the needle ( 70 ) in the needle track ( 84 ), and may deflect to allow the needle ( 70 ) to pass during the drive stoke due to resiliency in the cleat material or the overall system.
  • this embodiment includes reliefs ( 107 A, B) on the outer face ( 101 ) of the cover ( 100 ) aligned with the respective cleats ( 106 A, B).
  • the reliefs ( 107 A, B) reduce the cover ( 100 ) thickness providing a localized reduction of stiffness and allowing the cover ( 100 ) to resiliently deflect to accommodate the interference as the needle ( 70 ) passes.
  • the cleats ( 106 A, B) have multiple advantages compared to other techniques to prevent backward needle rotation, such as leaf springs or pawls.
  • the cleats ( 106 A, B) may be monolithically formed with the cover ( 100 ), thus eliminating separate components to advantageously reduce costs and simplify assembly.
  • the cover and cleats can be injection molded using materials like polycarbonate, polyetherimide, and the like.
  • the cleats ( 106 A, B) are static thus eliminating moving parts and making the system more robust and reliable.
  • the edges on the cleats ( 106 A, B) tend to be less abrasive thus reducing undesirable wear to the suture ( 73 ), especially when compared to a metallic leaf spring.
  • the bumps ( 109 A, B, C, D) project outwardly from the outer face ( 101 ) of the cover ( 100 ).
  • the bumps ( 109 A, B, C, D) engage the bridge ( 121 ) of the cage ( 120 ) with a dimensional interference, thus biasing the cover ( 100 ) against the lower body ( 81 ).
  • the distal bumps ( 109 A, B) are shorter than the proximal bumps ( 109 C, D).
  • the reliefs ( 108 C, D) reduce the cover ( 100 ) thickness providing a localized reduction of stiffness and allowing the cover ( 100 ) to resiliently deflect.
  • the cage ( 120 ) may be slid proximally relative the cartridge ( 90 ) to release the needle ( 70 ).
  • the cage ( 120 ) sufficiently disengages with the arms ( 103 A, B) so they are therefore no longer constrained against the lower body ( 81 ).
  • a gentle pull on the needle ( 70 ) will cause the arms ( 103 A, B) to deflect away from the lower body ( 81 ) allowing the needle ( 70 ) to eject from the needle track ( 84 ).
  • the inward load acting on the bumps ( 109 C, D) could rock cover ( 100 ) such that the arms ( 103 A, B) lift away from the lower body ( 81 ), thus leaving a gap from which the needle ( 70 ) could eject.
  • FIGS. 8-11 illustrate another embodiment of a cartridge ( 130 ) having a body ( 131 ) and a needle cover ( 132 ).
  • Cleats ( 136 A, B) project inwardly and dimensionally interfere with the needle ( 70 ) in the needle track ( 84 ).
  • Each cleat ( 136 A, B) has a ramped leading face ( 133 ) allowing the needle ( 70 ) to pass under and deflect the cleat ( 136 A, B) outward during the drive strokes.
  • the stepped trailing end ( 73 ) will rotate past one of the cleats ( 136 A, B) that will then deflect inward.
  • the trailing face ( 134 ) will engage with the trailing end ( 72 ) to prevent backward rotation of the needle ( 70 ).
  • Resiliency in the system allows the cleats ( 136 A, B) to deflect and return.
  • the needle cover ( 132 ) may be secured to the body ( 131 ) in zones ( 135 A, B, C) with welds, adhesives, fasteners, snap-fits, and the like. But by leaving the needle cover ( 131 ) unsecured in areas ( 139 A, B) aligned with the respective cleats ( 136 A, B), localized resilient outward deflection of the cover ( 131 ) may accommodate the dimensional interference as the needle ( 70 ) passes.
  • FIG. 12 illustrates another embodiment of a cartridge ( 140 ).
  • the needle cover ( 142 ) is connected to the body ( 141 ) by hinges ( 145 A, B) on the respective arms ( 143 A, B).
  • the hinges ( 145 A, B) in this embodiment are aligned normal with the longitudinal axis of the cartridge body ( 141 ). Snap fits, fasteners, frangible elements, or the like may be used to attach the remainder of the needle cover ( 142 ).
  • the needle ( 70 ) can be ejected by moving the needle cover ( 142 ) away from the body ( 141 ) about the hinges ( 145 A, B) to open and expose the needle track ( 84 ).
  • FIG. 13 illustrates another embodiment of a cartridge ( 150 ).
  • the needle cover ( 152 ) is connected to the body ( 151 ) by a longitudinally oriented hinge ( 155 ).
  • the hinge ( 155 ) is positioned adjacent the valley of the U-shaped distal end, but could also be located on either lateral side.
  • the needle ( 70 ) can be ejected by moving the needle cover ( 152 ) about the hinge ( 155 ) away from the cartridge body ( 151 ) to open and expose the needle track ( 84 ).
  • FIG. 14 illustrates another embodiment of a cartridge ( 160 ).
  • the needle cover ( 162 ) is connected to the body ( 161 ) by a pivot ( 165 ) located at the distal end of one of the arms.
  • the needle ( 70 ) can be ejected by moving the needle cover ( 162 ) parallel with cartridge body ( 161 ) about the pivot ( 165 ) to open and expose the needle track ( 84 ).
  • FIG. 15 illustrates another embodiment of a cartridge ( 170 ).
  • the needle cover ( 172 ) is connected to the body ( 171 ) by retention rails ( 175 A, B, C).
  • the needle ( 70 ) can be ejected by moving the needle cover ( 172 ) relative the rails ( 175 A, B, C) to open and expose the needle track ( 84 ).
  • the needle cover ( 172 ) slides laterally, but it could also slide longitudinally or diagonally.

Abstract

A needle cartridge is adapted to be attached to a receiver on a surgical suturing device. The cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture. A cartridge body has a track that receives the needle and defining a circular path. A needle driver is operable to rotate the needle along the circular path. A cover is on the body and positioned over the needle in the track. The cover is selectively moveable relative to the body to release the needle from the track.

Description

    BACKGROUND
  • The present invention relates in general to surgical devices and procedures, and more particularly to surgical suturing.
  • Sutures are often used in a wide variety of surgical procedures. Manual suturing is typically accomplished by the surgeon using a fine pair of graspers to grab and hold a suture needle, pierce the tissue with the needle, let go of the needle, and regrasp the needle to pull the needle and accompanying suture thread through the tissues to be sutured. Such needles are typically curved with the suture attached to the trailing end of the needle. A variety of automated suturing devices have been attempted to speed the process of suturing and to facilitate fine suturing or suturing during endoscopic, laparoscopic, or arthroscopic surgeries. While automated suturing devices are generally known, no one has previously made or used a surgical suturing device in accordance with the present invention.
  • BRIEF DESCRIPTION OF DRAWINGS
  • While the specification concludes with claims which particularly point out and distinctly claim the invention, it is believed the invention will be better understood from the following description taken in conjunction with the accompanying drawings illustrate some non-limiting examples of the invention. Unless otherwise indicated, the figures are not necessarily drawn to scale, but rather to illustrate the principles of the invention.
  • FIG. 1 depicts a side view of a surgical suturing device;
  • FIG. 2A depicts top perspective exploded view of a receiver;
  • FIG. 2B depicts bottom perspective exploded view of a receiver;
  • FIG. 3A depicts a scaled top perspective view of a cartridge;
  • FIG. 3B depicts a scaled bottom perspective view of a cartridge;
  • FIG. 4 depicts an exploded view of a cartridge;
  • FIG. 5A depicts a perspective view of a transmission for driving a needle at one end of its stroke;
  • FIG. 5B depicts a perspective view of a transmission for driving a needle at mid-stroke;
  • FIG. 5C depicts a perspective view of a transmission for driving a needle at the other end of its stroke;
  • FIG. 6A depicts an outer perspective view of a needle cover;
  • FIG. 6B depicts an inner perspective view of a needle cover;
  • FIG. 7 depicts a scaled perspective view of a cartridge with a cage in its proximal position;
  • FIG. 8 depicts a perspective view of a cartridge;
  • FIG. 9 depicts a perspective view of a needle cover;
  • FIG. 10 depicts a detailed view of a cleat engaging a trailing end of a needle;
  • FIG. 11 depicts a plan view of a needle cover;
  • FIG. 12 depicts a perspective view of a cartridge with an opened needle cover;
  • FIG. 13 depicts a perspective view of a cartridge with an opened needle cover;
  • FIG. 14 depicts a perspective view of a cartridge with an opened needle cover; and
  • FIG. 15 depicts a perspective view of a cartridge with an opened needle cover.
  • SUMMARY
  • In one embodiment, a surgical suturing device comprises an arced needle having a leading end, a trailing end, and a length of suture. A needle driver is operable to drive the needle in a first rotational direction along a circular path. A cleat projects into the circular path and is operable to engage and prevent the needle from rotating in a second rotational direction opposite the first rotational direction. The cleat may project inward into the plane of the circular path.
  • In another embodiment, a needle cartridge is adapted to be attached to a receiver on a surgical suturing device. The cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture. A track receives the needle and defines a circular path. A needle driver is operable to rotate the needle along the circular path in a first rotational direction. A cover captures the needle in the track. The cover comprises an outer face, an inner face, and a cleat projecting from the inner face into the track. The cleat is adapted to engage the trailing end of the needle and prevent the needle from rotating in a second rotational direction opposite the first rotational direction.
  • The needle driver may reciprocate between a drive stroke and a return stroke. The drive stroke may rotate the needle about 180 degrees. The cover may comprise two cleats projecting into the track spaced about 180 degrees from one another along the circular path. The cleats may be positioned to be adjacent the trailing end of the needle at the end of the drive strokes. The cleat and cover may be monolithically formed. The cleat may dimensionally interfere with the needle in the needle track. The cover may resiliently deflect to accommodate the interference. The upper face of the cover may comprise reliefs aligned with the cleats. The cleat may comprise a ramped leading face and a stepped trailing face adapted to engage the trailing end of the needle.
  • In another embodiment, a surgical suturing device comprises an arced needle comprising a leading end, a trailing end, and a length of suture connected to the needle. A needle driver is adapted to engage and rotate the needle in a circular path in a first rotational direction. A means engages the needle and prevents the needle from rotating in a second rotational direction opposite of the first rotational direction.
  • In yet another embodiment, a needle cartridge is adapted to be attached to a receiver on a surgical suturing device. The cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture. A body has a track receiving the needle and defining a circular path. A needle driver is operable to rotate the needle along the circular path. A cover captures the needle in the track. A cage engages and retains the needle cover against the body. The cage may slide relative the body to disengage with a portion of the cover allowing the cover to deflect and release the needle from the track.
  • In another embodiment, a needle cartridge is adapted to be attached to a receiver on a surgical suturing device. The cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture. A body has a pair of distally projecting arms and a track receiving the needle and defining a circular path. A needle driver is operable to rotate the needle along the circular path across the body arms. A cover captures the needle in the track, the cover having a pair of distally projecting arms aligned with the body arms. A cage is slideable relative the body between a distal position where the cage constrains the cover arms against the body arms to capture the needle in the track, and a proximal position where the cage disengages from the cover arms allowing the needle to eject from the track. The body and cover arms may define a generally U-shaped distal end, and the cage may comprise a U-shaped distal end that aligns with the U-shaped distal end when the cage is in its distal position. The cover arms deflect to eject the needle.
  • In yet another embodiment, a needle cartridge is adapted to be attached to a receiver on a surgical suturing device. The cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture. A cartridge body has a track that receives the needle and defining a circular path. A needle driver is operable to rotate the needle along the circular path. A cover is on the body and positioned over the needle in the track. The cover is selectively moveable relative to the body to release the needle from the track.
  • The needle cartridge may further comprise a hinge connecting the cover to the body. The body may have a longitudinal axis and the hinge is oriented normal to the longitudinal axis. The hinge is oriented parallel to the longitudinal axis. The needle cartridge may further comprise a pivot connecting the cover to the body. The cover may rotate about the pivot in a plane parallel with the circular path. The cover may slide laterally relative the body.
  • In another embodiment, a needle cartridge is adapted to be attached to a receiver on a surgical suturing device. The cartridge comprises an arced needle having a leading end, a trailing end, and a length of suture. A cartridge body has a track that receives the needle and defining a circular path. A needle driver is operable to rotate the needle along the circular path. A cover is on the body positioned over the needle in the track. The cartridge comprises a means for moving the cover to release the needle from the track.
  • In yet another embodiment, a needle cartridge is adapted to be attached to a receiver on a surgical suturing device. The cartridge comprises a body having a length, a width, and a height. The length is at least twice the width, and the width is less than 3.5 times the height. The cartridge comprises an arced needle and a suture, and a needle driver operable to drive the needle in a circular path. The length may be less than 5 times with width, and the width may be greater than the height.
  • The needle cartridge may further comprise one or more asymmetrical features operable to prevent improper engagement with the receiver. The needle cartridge may further comprise a transmission connecting a rotary input to the needle driver. The needle cartridge may further comprise a step operable to be engaged by a latch tooth on the receiver. The body may further comprise upper and lower faces being generally flat and parallel to one another.
  • In another embodiment, a needle cartridge adapted to be attached to a receiver on a surgical suturing device. The cartridge comprises a generally flat upper and lower faces parallel to one another, a proximal end and two distal arms. The cartridge has a length, a width and a height wherein the length is at least twice the width, and the width is less than 3.5 times the height. The cartridge has an arced needle and a suture, and a needle driver operable to drive the needle in a circular path spanning the arms. The length may be less than 5 times with width, and the width may be greater than the height
  • The upper and lower surfaces may be asymmetrical to prevent improper engagement with the receiver. The distal face may be asymmetrical to prevent improper engagement with the receiver. A recessed step on the upper face may be operable to be engaged by a latch tooth on the receiver. A rotary input on the lower face and a transmission may operably connect the rotary input to the needle driver.
  • In another embodiment, a needle cartridge is adapted to be attached to a receiver on a surgical suturing device. The cartridge comprises upper and lower faces each being generally flat and parallel to one another. The upper and lower faces are each generally rectangular with a U-shaped distal notch. The upper and lower faces each have a length and a width where the length is at least twice the width. The cartridge has an arced needle and a suture, and a needle driver operable to drive the needle in a circular path parallel with the upper and lower faces and across the U-shaped notch. A transmission operably connects the rotary input on the lower face to the needle driver.
  • DETAILED DESCRIPTION
  • FIG. 1 illustrates an embodiment of a surgical suturing device. An elongate shaft (20) has a proximal end (21), a distal end (22), and a longitudinal axis extending therebetween. An actuator (10) is connected to the proximal end (21) of the shaft (20). In this embodiment the actuator (10) is a manual pistol grip handle; however, a variety of other manual actuators could also be used, including a scissor grip handle, a syringe grip handle, endoscopic rotary knobs, and the like. The actuator (10) could also take the form of a robotic interface, such as a DAVINCI puck, or a housing comprising gears or pulleys, servomechanisms, and the like.
  • A circular needle applier (30) is connected to the distal end (22) of the shaft (20). The circular needle applier (30) rotates an arced needle in a circular path enabling a surgeon to selectively apply sutures. The circular needle applier (30) may be integral with the shaft (20) and actuator (10) as a unitary disposable instrument intended for a single surgical procedure. The circular needle applier (30) may also be integral with the shaft (20) and actuator (10) as a reusable instrument. Optionally, as illustrated here, the circular needle applier (30) may be embodied in a disposable cartridge (90) and the shaft (20) may include a receiver (50) to hold the cartridge (90). In such an embodiment, the shaft (20) and actuator (10) may also be disposable or reusable. Embodiments with reusable components are intended to be cleaned, sterilized, and reused for a multiple surgical procedures, and may include a flush port (18) to facilitate cleaning. The preferable life cycle of a reusable instrument is at least 50 operations, more preferably at least 150 operations, and most preferably at least 200 operations. Reusable components may be built using materials that can withstand autoclave sterilization temperatures of at least 135 degrees Celsius, although low temperature materials can also used with low temperature sterilization techniques known in the art.
  • A first input (12), shown here as a trigger that pivots between opened and closed positions, may be used to selectively actuate the circular needle applier (30). The trigger may be spring biased to return the trigger to its open position. A second input (14), shown here as a rotary knob, may be used to selectively articulate the shaft (20). A third input (16), shown here as a rotary knob, may be used to selectively rotate the circular needle applier (30) about the shaft (20). Naturally, the number, type, configuration, and operation of the inputs (12, 14, and 16) may vary.
  • Examples of surgical suturing devices and subcomponents are disclosed in co-owned U.S. application Ser. No. 13/832,595 filed 15 Mar. 2013 (docket number END7266USNP), the disclosures of which are incorporated herein by reference. Many of the teachings disclosed in that application are applicable to the present disclosure.
  • FIGS. 2A-B illustrate exploded views of an embodiment of a receiver (50). The shaft distal end (22) comprises an articulation joint (23) and a rotational bearing (24). The joint (23) includes a knuckle (23A) that receives pins (23B, C) connected to the bearing supports (24B, C). Thus, the pins (23B, C) define the pivoting axis for the joint (23) enabling the receiver (50) to articulate left and right relative the shaft (20). Rods (27A, B) are operably connected to the joint (23). In this embodiment the rods (27A, B) extend through the shaft (20), through the knuckle (23A), and connect to pins (29A, B) on the bearing support (24C). The rods (27A, B) are operatively connected to the second input (14) to alternately push and pull the rods (27A, B). Because the pins (29A, B) are laterally spaced from the pivoting axis, the push and pull action will in turn articulate the receive (50) about the joint (23) relative the shaft (20).
  • The rotational bearing (24) is positioned distal to the articulation joint (23). The bearing (24) includes a circumferential flange (24A) captured between the bearing supports (24B, 24C) such that the flange (24A) can rotate relative the bearing supports (24B, 24C) and enabling unbounded rotation of the receiver (50) relative the shaft (20). A drive rod (28) extends through the shaft (20). In this embodiment the drive rod (28) comprises a proximal rigid portion (28A) and a distal bendable portion (28B) fixedly connected to one another. The bendable portion (28B) extends through the joint (23) and through the bearing (24), and the distal end (28C) is fixedly connected to the mount (49) on the rack (45).
  • The rack (45) reciprocates longitudinally in the lower jaw (51) with the followers (45A, B, C and D) constrained in tracks (55A, B, C, and D), respectively. The tracks (55A, B, C, and D) open through the lower jaw (51) providing fluid passages to the internal components within the lower jaw (51), thus facilitating easier cleaning. A pinion (47) is mounted to the lower jaw (51) by the pin (46) in the rack (45) such that longitudinal reciprocation of the rack (45) is translated to rotational reciprocation of the pinion (47). The key (48) translates the reciprocating rotation to the transmission in the cartridge (90), which in turn actuates the circular needle applier (30).
  • The drive rod (28) is operatively connected to the first input (12) and to the third input (16). Actuation of the first input (12) will impart axial push and pull loads on the drive rod (28) to longitudinally reciprocate the rack (45) and actuate the circular needle applier (30). Actuation of the third input (16) will impart a rotational load on the drive rod (28) thus rotating the receiver (50) about the bearing (24) relative to the shaft (20). Accordingly, a single drive rod (28) operates to both actuate the circular needle applier (30) as well as control distal rotation. By consolidating dual functions with a single drive rod (28), the number of components is reduced, and more space is provided in the shaft (20), making the device less expensive to manufacture and easier to clean.
  • The receiver (50) is dimensioned and adapted to receive and hold a disposable cartridge (90). The receiver has upper and lower jaws (56, 51) having a closed position adapted receive and retain the cartridge (90) and an opened position adapted to release the cartridge. In this embodiment, the lower jaw (51) is stationary and the upper jaw (56) pivots; however, the arrangement could be reversed, or in an alternative embodiment both jaws (56, 51) could pivot. The lower jaw (51) has two laterally offset longitudinal rails (52) dimensioned and adapted to receive the cartridge (90). The rails (52) help longitudinally align the cartridge (90) in the receiver (50) and laterally retain the cartridge (90) in the jaws (51, 56). The upper jaw (56) pivots relative the lower jaw (51) about the pin (53) that is received in the holes (57). A tooth (59) is resiliently oriented downward from the upper jaw (56) toward the lower jaw (51) with a ramped distal face and a stepped proximal face. The tooth (59) is dimensioned and adapted to latch with the cartridge (90) and longitudinally retain the cartridge in the jaws (51, 56). The tooth (59) deflects by virtue of a resilient cantilevered arm extending proximally from the distal end of the upper jaw (56). In this embodiment the tooth (59) and cantilevered arm are monolithic with the upper jaw (56), thus reducing the number of components and moving pieces, making the device less expensive to manufacture and easier to clean.
  • The button (60) is used to open and close the jaws (51, 56). While the button (60) could be place on or near the actuator (10), in this embodiment the button (60) is positioned adjacent the receiver (50), which eliminates a linkage in the shaft (20) thus creating space in the shaft (20) and making the device less expensive and easier to clean. The action of the button (60) may vary, but in this embodiment the button (60) pivots relative the lower jaw (51) about the pin (63) that is received in hole (61). The follower (62) is received by the cam slots (54, 58). Pivoting the button (60) proximally will open the jaws (51, 56), while pivoting the jaws distally will close the jaws (51, 56). The spring (64) engages and biases the button (60) distally. By pulling the button (60) proximally, the follower (62) will drive the cam slot (58) to open the upper jaw (56). When the button (60) is released, the spring (64) will bias the button (60) distally to close the upper jaw (56).
  • FIGS. 3A-B illustrate one embodiment of a disposable needle driver cartridge (90) adapted to be attached to the receiver (50). The upper and lower faces (96, 91) are generally rectangular with a generally U-shaped distal notch. The upper and lower faces (96, 91) are generally flat and parallel to one another. The dimensional ratios of the cartridge (90) may vary based on functional and aesthetic considerations, but in this embodiment the cartridge (90) is elongate with a length at least 2 times the width, and a width less than 3.5 times the height. Optionally, the length may be less than 5 times with width, and the width may be greater than 1.0 times the height.
  • The lower face (91) is adapted to engage the lower jaw (51) and the upper face (96) to engage the upper jaw (56). Asymmetrical features on the cartridge (90) are operable to prevent improper insertion of the cartridge (90) into the receiver (50), but also contribute to the aesthetic appearance of the cartridge (90). For instance, the lower face (91) has a pair of longitudinal notched shoulders (92) dimensioned to interface and mate with the rails (52). In this embodiment, the notched shoulders (92) are shaped as stepped rabbets, but a variety of other aesthetic shapes could also be employed such as chamfers and radii. In contrast, the upper face (96) is asymmetrical relative the lower face (91) and lacks shoulder notches, so the upper face (96) would interfere with the rails (52) if the cartridge was inserted upside-down. In another instance, the geometry of the proximal face (98) is vertically asymmetrical thus preventing the cartridge (90) from being inserted upside-down between the jaws (51, 56). In this embodiment, the proximal face (98) comprises a curved surface that gently transitions to the upper face (96), which matches similar geometry in the receiver (50), while the transition to the lower face (91) has a tighter radius. Naturally, a variety of other dimensional ratios and asymmetrical aesthetic geometries could also be employed that could contribute to the visual appearance of the cartridge (90).
  • The slot (95) and rotary input (94) are aligned and dimensioned to receive the key (48) while the cartridge (90) is being slid into the receiver (50). When the cartridge (90) is fully seated into the receiver (50), the recessed step (99) aligns with and receives the tooth (59) to latch the cartridge (90) in the receiver (50). The key (48) also aligns with rotary input (94) thereby providing a torsional interface that rotationally couples the pinion (47) and rotary input (94). In use, the needle (70) exits arm (93A) and enters arm (93B).
  • The cage (120) slides longitudinally on the cartridge (90) between a distal position (as shown in FIGS. 3A-B) and a proximal position (as shown in FIG. 7). The cage (120) may be formed from a sheet of metal stamped and bent to shape, but other materials and manufacturing techniques could also be used. A pair of laterally space legs (122A, B) each include a flange (127A, B) that engages and slides in the stepped notches (87A, B). A bridge (121) extends between the legs (122A, B) that engages and retains the needle cover (100) against the cartridge (90). The bridge (121) includes a distal U-shaped notch aligned with the arms (93A, B). The legs (122A, B) each include an opening (123) that receives a lateral protrusion (83) from the cartridge (90). The protrusions (83) expand the space in the cartridge (90) to accommodate the needle and carrier tracks (84, 88). The protrusions (83) each include a distal ramped portion allowing the cage (120) to slide proximally, and a proximal stepped portion that engages the edge of the openings (123) preventing the cage (120) from sliding distally off the cartridge (90).
  • Features may be added to facilitate sliding the cage (120). In one example, a recess (125) is provided on the bridge (121) into which a surgeon may insert a surgical instrument to push the cage (120) proximally. The recess (125) aligns with a longitudinal recess (110) to facilitate a more secure engagement between the instrument and the recess (125). In another example, a circular hole (124) extends through each of the legs (122A, B) into which a surgeon may insert a surgical instrument to push the cage (120) proximally. Naturally, the shape, size, and configuration of the features may vary from the foregoing.
  • FIG. 4 illustrates an example of a cartridge (90) comprising a lower body (81), an upper body (82), and a needle cover (83). The needle driver (86), rotary input (94), and link (85) are captured between the lower body (81) and an upper body (82). The lower and upper bodies (81, 82) are attached to one another using a variety of known techniques, including welds, pins, adhesives, and the like to form the cartridge body. The needle (70) has a leading end (71) and a length of suture (73) extending from the trailing end (72). The needle (70) rotates in a circular path defined by the needle track (84) and between the arms (93A, B). Features (74) may be provided to facilitate the needle driver (86) to engage and drive the needle (70). The needle (70) is captured in the needle track (84) by the needle cover (83). The cage (87) slides over the cartridge body to attach the needle cover (83) against the lower body (81).
  • FIGS. 5A-C illustrate an embodiment of a drive stroke of the transmission in the cartridge (90) for driving a needle (70) in a circular path. The needle driver (86) rides in the carrier track (88) and extends into the needle track (84) to engage and drive the needle (70). A link (85) connects the rotary input (94) to the needle driver (86). FIG. 5A illustrates the needle driver (86) positioned at one end of its stroke in the carrier track (88). As shown in FIG. 5B, counterclockwise rotation of the rotary input (94) will translate the needle driver (86) clockwise along the carrier track (88) driving the needle (70) clockwise. As shown in FIG. 5C, continued counterclockwise rotation of the rotary input (94) will continue to translate the needle driver (86) and drive the needle (70) clockwise until it reaches the other end of its stroke in the carrier track (88). In this embodiment, the drive stroke rotates the needle (70) in its circular path about 180 degrees. For the return stroke, the sequence can be reversed by rotating the rotary input (94) clockwise, which will translate the needle driver (86) counterclockwise in the carrier track (88). Thus, a sequence of drive and return strokes will rotate the needle (70) in a circular path.
  • FIGS. 6A-B illustrate an embodiment of a needle cover (100) having an outer face (101) and an inner face (102) that engages the lower body (81). The arms (103A, B) define a generally U-shaped distal end that aligns with respective arms (93A, B) on the cartridge (90). Tabs (104A, B) facilitate aligning and laterally stabilizing the arms (103A, B) relative the respective arms (93A, B). Post (105) facilitates attaching the cover (100) to the lower body (81), and may have an interference fit with a mating hole on the lower body (81). The cover (100) captures the needle (70) in the needle track (84). The medial edge (103C) partially covers the needle track (84) defining a medial window along the length of needle track (84) through which the suture may extend out. However, the window is dimensioned smaller than the thickness of the needle (70) so as to constrain the needle (70) in the needle track (84).
  • Cleats (106A, B) extend from the inner face (102) into the needle track (84). While the present embodiment shows the cleats (106A, B) projecting inwardly into the plane of the needle track (84), cleats may be positioned with alternative orientations, such as from the side walls of the needle track (84) or from the floor of the needle track (84). The cleats (106A, B) are positioned so as to be adjacent to the trailing end (72) of the needle (70) at the end of the drive stroke. The cleats (106A, B) allow the needle (70) to rotate during the drive stroke, but engage the trailing end (72) to prevent the needle (70) from rotating in the opposite direction during the return stroke. Accordingly, the needle (70) rotates in only one direction with the leading end (71) going forward. The cleats (106A, B) may dimensionally interfere with the needle (70) in the needle track (84), and may deflect to allow the needle (70) to pass during the drive stoke due to resiliency in the cleat material or the overall system. For instance, this embodiment includes reliefs (107A, B) on the outer face (101) of the cover (100) aligned with the respective cleats (106A, B). The reliefs (107A, B) reduce the cover (100) thickness providing a localized reduction of stiffness and allowing the cover (100) to resiliently deflect to accommodate the interference as the needle (70) passes.
  • The cleats (106A, B) have multiple advantages compared to other techniques to prevent backward needle rotation, such as leaf springs or pawls. For example, the cleats (106A, B) may be monolithically formed with the cover (100), thus eliminating separate components to advantageously reduce costs and simplify assembly. For instance, the cover and cleats can be injection molded using materials like polycarbonate, polyetherimide, and the like. In another example, the cleats (106A, B) are static thus eliminating moving parts and making the system more robust and reliable. In yet another example, the edges on the cleats (106A, B) tend to be less abrasive thus reducing undesirable wear to the suture (73), especially when compared to a metallic leaf spring.
  • The bumps (109A, B, C, D) project outwardly from the outer face (101) of the cover (100). The bumps (109A, B, C, D) engage the bridge (121) of the cage (120) with a dimensional interference, thus biasing the cover (100) against the lower body (81). In this embodiment, the distal bumps (109A, B) are shorter than the proximal bumps (109C, D). Reliefs (108C, D) on the inner face (102) aligned with the respective proximal bumps (109C, D). The reliefs (108C, D) reduce the cover (100) thickness providing a localized reduction of stiffness and allowing the cover (100) to resiliently deflect.
  • As shown in FIG. 7, the cage (120) may be slid proximally relative the cartridge (90) to release the needle (70). In its proximal position, the cage (120) sufficiently disengages with the arms (103A, B) so they are therefore no longer constrained against the lower body (81). Thus, a gentle pull on the needle (70) will cause the arms (103A, B) to deflect away from the lower body (81) allowing the needle (70) to eject from the needle track (84). Optionally, when the cage (120) is pulled proximally the inward load acting on the bumps (109C, D) could rock cover (100) such that the arms (103A, B) lift away from the lower body (81), thus leaving a gap from which the needle (70) could eject.
  • FIGS. 8-11 illustrate another embodiment of a cartridge (130) having a body (131) and a needle cover (132). Cleats (136A, B) project inwardly and dimensionally interfere with the needle (70) in the needle track (84). Each cleat (136A, B) has a ramped leading face (133) allowing the needle (70) to pass under and deflect the cleat (136A, B) outward during the drive strokes. At the end of the drive stroke the stepped trailing end (73) will rotate past one of the cleats (136A, B) that will then deflect inward. The trailing face (134) will engage with the trailing end (72) to prevent backward rotation of the needle (70). Resiliency in the system allows the cleats (136A, B) to deflect and return. For instance, the needle cover (132) may be secured to the body (131) in zones (135A, B, C) with welds, adhesives, fasteners, snap-fits, and the like. But by leaving the needle cover (131) unsecured in areas (139A, B) aligned with the respective cleats (136A, B), localized resilient outward deflection of the cover (131) may accommodate the dimensional interference as the needle (70) passes.
  • FIG. 12 illustrates another embodiment of a cartridge (140). The needle cover (142) is connected to the body (141) by hinges (145A, B) on the respective arms (143A, B). The hinges (145A, B) in this embodiment are aligned normal with the longitudinal axis of the cartridge body (141). Snap fits, fasteners, frangible elements, or the like may be used to attach the remainder of the needle cover (142). The needle (70) can be ejected by moving the needle cover (142) away from the body (141) about the hinges (145A, B) to open and expose the needle track (84).
  • FIG. 13 illustrates another embodiment of a cartridge (150). The needle cover (152) is connected to the body (151) by a longitudinally oriented hinge (155). In this example the hinge (155) is positioned adjacent the valley of the U-shaped distal end, but could also be located on either lateral side. The needle (70) can be ejected by moving the needle cover (152) about the hinge (155) away from the cartridge body (151) to open and expose the needle track (84).
  • FIG. 14 illustrates another embodiment of a cartridge (160). The needle cover (162) is connected to the body (161) by a pivot (165) located at the distal end of one of the arms. The needle (70) can be ejected by moving the needle cover (162) parallel with cartridge body (161) about the pivot (165) to open and expose the needle track (84).
  • FIG. 15 illustrates another embodiment of a cartridge (170). The needle cover (172) is connected to the body (171) by retention rails (175A, B, C). The needle (70) can be ejected by moving the needle cover (172) relative the rails (175A, B, C) to open and expose the needle track (84). In this embodiment the needle cover (172) slides laterally, but it could also slide longitudinally or diagonally.
  • Having shown and described various embodiments and examples of the present invention, further adaptations of the methods and devices described herein can be accomplished by appropriate modifications by one of ordinary skill in the art without departing from the scope of the present invention. Several of such potential modifications have been mentioned, and others will be apparent to those skilled in the art. For instance, the specific materials, dimensions, and the scale of drawings will be understood to be non-limiting examples. Accordingly, the scope of the present invention should be considered in terms of the following claims and is understood not to be limited to the details of structure, materials, or acts shown and described in the specification and drawings.

Claims (8)

1. A needle cartridge adapted to be attached to a receiver on a surgical suturing device, the cartridge comprising:
an arced needle having a leading end, a trailing end, and a length of suture;
a cartridge body having a track that receives the needle and defining a circular path;
a needle driver operable to rotate the needle along the circular path; and
a cover on the body and positioned over the needle in the track, the cover being selectively moveable relative to the body to release the needle from the track.
2. The needle cartridge of claim 1, further comprising a hinge connecting the cover to the body.
3. The needle cartridge of claim 2, wherein the body has a longitudinal axis and the hinge is oriented normal to the longitudinal axis.
4. The needle cartridge of claim 2, wherein the body has a longitudinal axis and the hinge is oriented parallel to the longitudinal axis.
5. The needle cartridge of claim 1, further comprising a pivot connecting the cover to the body.
6. The needle cartridge of claim 1, wherein the cover rotates about the pivot in a plane parallel with the circular path.
7. The needle cartridge of claim 1, wherein the cover slides laterally relative the body.
8. A needle cartridge adapted to be attached to a receiver on a surgical suturing device, the cartridge comprising:
an arced needle having a leading end, a trailing end, and a length of suture;
a cartridge body having a track that receives the needle and defining a circular path;
a needle driver operable to rotate the needle along the circular path;
a cover on the body positioned over the needle in the track; and
means for moving the cover to release the needle from the track.
US14/298,072 2013-03-15 2014-06-06 Needle Cartridge with Moveable Cover Abandoned US20150351749A1 (en)

Priority Applications (14)

Application Number Priority Date Filing Date Title
US14/298,056 US9788830B2 (en) 2014-06-06 2014-06-06 Needle cartridge with cage
US14/298,072 US20150351749A1 (en) 2014-06-06 2014-06-06 Needle Cartridge with Moveable Cover
US14/600,486 US20150133967A1 (en) 2013-03-15 2015-01-20 Elongate Needle Cartridge
CN201580041926.8A CN106659495A (en) 2014-06-06 2015-05-21 Circular needle driver
JP2016571290A JP2017516598A (en) 2014-06-06 2015-05-21 Circular needle driver
PCT/US2015/031911 WO2015187379A1 (en) 2014-06-06 2015-05-21 Circular needle driver
RU2017102369A RU2017102369A (en) 2014-06-06 2015-05-21 BENT NEEDLE HOLDER
EP15726845.9A EP3151754B8 (en) 2014-06-06 2015-05-21 Circular needle driver
BR112016028530A BR112016028530A2 (en) 2014-06-06 2015-05-21 circular needle drive
RU2016152144A RU2016152144A (en) 2014-06-06 2015-05-21 BENT NEEDLE HOLDER
AU2015271146A AU2015271146A1 (en) 2014-06-06 2015-05-21 Circular needle driver
AU2016273870A AU2016273870B2 (en) 2014-06-06 2016-12-13 Circular needle driver
JP2017036215A JP2017109142A (en) 2014-06-06 2017-02-28 Circular needle driver
US15/970,191 US20180249995A1 (en) 2014-06-06 2018-05-03 Needle cartridge with moveable cover

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
US14/298,072 US20150351749A1 (en) 2014-06-06 2014-06-06 Needle Cartridge with Moveable Cover
US14/298,056 US9788830B2 (en) 2014-06-06 2014-06-06 Needle cartridge with cage
US14/298,038 US9375212B2 (en) 2014-06-06 2014-06-06 Circular needle applier with cleats

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US15/970,191 Continuation US20180249995A1 (en) 2014-06-06 2018-05-03 Needle cartridge with moveable cover

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US20150351749A1 true US20150351749A1 (en) 2015-12-10

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US14/298,072 Abandoned US20150351749A1 (en) 2013-03-15 2014-06-06 Needle Cartridge with Moveable Cover
US14/298,056 Active 2036-03-22 US9788830B2 (en) 2013-03-15 2014-06-06 Needle cartridge with cage
US14/600,486 Abandoned US20150133967A1 (en) 2013-03-15 2015-01-20 Elongate Needle Cartridge
US15/970,191 Abandoned US20180249995A1 (en) 2014-06-06 2018-05-03 Needle cartridge with moveable cover

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US14/298,056 Active 2036-03-22 US9788830B2 (en) 2013-03-15 2014-06-06 Needle cartridge with cage
US14/600,486 Abandoned US20150133967A1 (en) 2013-03-15 2015-01-20 Elongate Needle Cartridge
US15/970,191 Abandoned US20180249995A1 (en) 2014-06-06 2018-05-03 Needle cartridge with moveable cover

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Country Link
US (4) US20150351749A1 (en)
EP (1) EP3151754B8 (en)
JP (2) JP2017516598A (en)
CN (1) CN106659495A (en)
AU (2) AU2015271146A1 (en)
BR (1) BR112016028530A2 (en)
RU (2) RU2017102369A (en)
WO (1) WO2015187379A1 (en)

Cited By (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9375212B2 (en) 2014-06-06 2016-06-28 Ethicon Endo-Surgery, Llc Circular needle applier with cleats
US9474522B2 (en) 2014-06-06 2016-10-25 Ethicon Endo-Surgery, Llc Jawed receiver for needle cartridge
US9597071B1 (en) 2004-09-20 2017-03-21 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US20170119376A1 (en) 2001-06-14 2017-05-04 Endoevolution, Llc Devices and methods for surgical suturing
US9675339B2 (en) 2004-09-20 2017-06-13 Endoevolution, Llc Devices and methods for minimally invasive suturing
US9788830B2 (en) 2014-06-06 2017-10-17 Ethicon Llc Needle cartridge with cage
USD800306S1 (en) 2015-12-10 2017-10-17 Ethicon Llc Surgical suturing device
US20170360431A1 (en) * 2016-06-20 2017-12-21 Covidien Lp Loading fixture for use with endoscopic stitching device
US9962156B2 (en) 2006-01-27 2018-05-08 Endoevolution, Llc Suturing needle
US9986998B2 (en) 2012-12-13 2018-06-05 Ethicon Llc Cartridge interface for surgical suturing device
US10022120B2 (en) 2015-05-26 2018-07-17 Ethicon Llc Surgical needle with recessed features
US20180221050A1 (en) * 2017-02-06 2018-08-09 Covidien Lp Connector clip for securing an introducer to a surgical fastener applying apparatus
US10098630B2 (en) 2004-09-20 2018-10-16 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US10292698B2 (en) 2017-07-27 2019-05-21 Endoevolution, Llc Apparatus and method for minimally invasive suturing
USD865964S1 (en) 2017-01-05 2019-11-05 Ethicon Llc Handle for electrosurgical instrument
US10542968B2 (en) 2016-12-23 2020-01-28 Brigham And Women's Hospital, Inc. Systems and methods for suturing tissue
USD895112S1 (en) 2018-11-15 2020-09-01 Ethicon Llc Laparoscopic bipolar electrosurgical device
US10799233B2 (en) 2012-05-01 2020-10-13 Brigham And Women's Hospital, Inc. Suturing device for laparoscopic procedures
US11253250B2 (en) 2017-02-26 2022-02-22 Intuitive Surgical Operations, Inc. Apparatus and method for minimally invasive suturing

Families Citing this family (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD754856S1 (en) * 2015-01-21 2016-04-26 Ethicon Endo-Surgery, Llc Suture cartridge
US10004491B2 (en) * 2015-06-15 2018-06-26 Ethicon Llc Suturing instrument with needle motion indicator
US9867608B1 (en) * 2015-06-16 2018-01-16 Ethicon Endo-Surgery, Llc Suturing instrument with circular needle motion
US9839419B2 (en) * 2015-06-16 2017-12-12 Ethicon Endo-Surgery, Llc Suturing instrument with jaw having integral cartridge component
US9782164B2 (en) * 2015-06-16 2017-10-10 Ethicon Endo-Surgery, Llc Suturing instrument with multi-mode cartridges
US9888914B2 (en) 2015-06-16 2018-02-13 Ethicon Endo-Surgery, Llc Suturing instrument with motorized needle drive
US10070858B2 (en) * 2015-06-17 2018-09-11 Ethicon Llc Barbed suture dispenser
US10327757B1 (en) * 2015-06-17 2019-06-25 Ethicon Llc Surgical system with endoscope and suturing instrument
US10561412B2 (en) * 2015-10-21 2020-02-18 Ethicon Llc Suturing instrument with integrated cover needle release
US10321905B2 (en) 2015-10-21 2019-06-18 Ethicon Llc Suturing instrument with jaw having integral needle cover
US10188381B2 (en) * 2015-11-20 2019-01-29 Dura Tap Llc Suture repair device
US11311285B2 (en) 2015-12-21 2022-04-26 Lsi Solutions, Inc. Prosthetic suturing device and methods thereof
US11213389B2 (en) 2016-10-17 2022-01-04 Lsi Solutions, Inc. Prosthetic suturing device and methods thereof
US11344294B2 (en) 2016-10-24 2022-05-31 ReViable Surgical, Inc. Laparoscopic suturing devices, needles, sutures, and drive systems
US10143465B2 (en) 2016-10-24 2018-12-04 ReViable Surgical, Inc. Laparoscopic suturing devices, needles, sutures, and drive systems
US10537322B2 (en) * 2017-01-17 2020-01-21 Ethicon Llc Surgical suturing instrument cartridge with needle release feature
WO2020102407A1 (en) * 2018-11-15 2020-05-22 ReViable Surgical, Inc. Laparoscopic suturing devices, needles, sutures, and drive systems
US11653912B2 (en) * 2019-12-12 2023-05-23 Intuitive Surgical Operations, Inc. Needle driver devices and related systems and methods
WO2022187475A1 (en) 2021-03-03 2022-09-09 Acustitch, Llc System and method for osseous reconstruction and repair and implant device

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4239308A (en) * 1979-03-29 1980-12-16 Bradley Paul W Display tray assembly
US5944724A (en) * 1997-10-30 1999-08-31 Mitek Surgical Products, Inc. Suture anchor insertion system
US20060069396A1 (en) * 2004-09-20 2006-03-30 Suturtek Incorporated Apparatus and method for minimally invasive suturing
US20130041388A1 (en) * 2011-08-14 2013-02-14 SafePath Medical, Inc. Apparatus and method for suturing tissue

Family Cites Families (282)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB190918602A (en) 1909-08-12 1910-02-17 Ross Hazelrigg Improvements relating to Insect Traps.
US1579379A (en) 1925-07-06 1926-04-06 Myer M Marbel Surgical instrument
US1884149A (en) 1928-03-02 1932-10-25 Youngstown Sheet And Tube Co Welding rod
US1822330A (en) 1930-01-13 1931-09-08 Ainslie George Suturing instrument
US2291181A (en) 1941-10-06 1942-07-28 Harry M Alderman Car replacer fastening device
US3168097A (en) 1960-08-02 1965-02-02 Porges Needle holder having a rotating clamp for surgical sutures
US3598281A (en) 1969-09-18 1971-08-10 Richards Mfg Co Portable loading mechanism for hemostasis clips
US3749238A (en) 1971-09-23 1973-07-31 Cenco Medical Health Supply Co Suture dispenser package and method of making
US4027608A (en) 1976-02-20 1977-06-07 Raymond Kelder Suturing device
US4123982A (en) 1977-04-05 1978-11-07 Bess Jr Kenneth B Blind suturing apparatus
US4196836A (en) 1978-02-14 1980-04-08 Senco Products Inc. Surgical stapling instrument
US4235177A (en) 1979-02-23 1980-11-25 Raymond C. Kelder Suturing device
JPS55151956A (en) 1979-05-17 1980-11-26 Janome Sewing Machine Co Ltd Sewing machine for medical treatment
US4406237A (en) 1980-05-23 1983-09-27 Janome Sewing Machine Co. Ltd. Suturing instrument for surgical operation
JPS571332A (en) 1980-06-06 1982-01-06 Janome Sewing Machine Co Ltd Catching of needle yarn loop of operation suturing device
JPS57170239A (en) 1981-04-13 1982-10-20 Janome Sewing Machine Co Ltd Holding of shuttle of suturing device for operation
SE441643B (en) 1983-02-08 1985-10-28 Innova Ab suturing instrument
US4899746A (en) 1988-04-28 1990-02-13 Brunk Industries, Inc. Suturing apparatus
US5632746A (en) 1989-08-16 1997-05-27 Medtronic, Inc. Device or apparatus for manipulating matter
US5133723A (en) 1990-04-25 1992-07-28 Mitek Surgical Products, Inc. Suture rundown tool and cutter system
US5209747A (en) 1990-12-13 1993-05-11 Knoepfler Dennis J Adjustable angle medical forceps
US5282837A (en) 1991-04-12 1994-02-01 Incontrol, Inc. Atrial defibrillator and method
WO1993001750A1 (en) 1991-07-23 1993-02-04 Kernforschungszentrum Karlsruhe Gmbh Surgical stitching instrument
US5383888A (en) 1992-02-12 1995-01-24 United States Surgical Corporation Articulating endoscopic surgical apparatus
GB2287196B (en) 1991-09-30 1995-11-15 Philip Richardson A surgical incision member for use in suturing
US5312023A (en) 1991-10-18 1994-05-17 United States Surgical Corporation Self contained gas powered surgical apparatus
US5289963A (en) 1991-10-18 1994-03-01 United States Surgical Corporation Apparatus and method for applying surgical staples to attach an object to body tissue
US5610653A (en) 1992-02-07 1997-03-11 Abecassis; Max Method and system for automatically tracking a zoomed video image
US5282806A (en) 1992-08-21 1994-02-01 Habley Medical Technology Corporation Endoscopic surgical instrument having a removable, rotatable, end effector assembly
US5318578A (en) 1992-03-17 1994-06-07 Harrith M. Hasson Apparatus for delivering a suture into a body cavity and method of using the apparatus
HU215301B (en) 1992-03-30 1999-01-28 György Lichtenberger Surgical instrument for the placement of a catgut mainly in the cavities of the human body
US5657429A (en) 1992-08-10 1997-08-12 Computer Motion, Inc. Automated endoscope system optimal positioning
US5306281A (en) 1992-08-31 1994-04-26 Merrimac Industries, Inc. Suturing cassette device
US5308353A (en) 1992-08-31 1994-05-03 Merrimac Industries, Inc. Surgical suturing device
US5713910A (en) 1992-09-04 1998-02-03 Laurus Medical Corporation Needle guidance system for endoscopic suture device
US5540704A (en) 1992-09-04 1996-07-30 Laurus Medical Corporation Endoscopic suture system
US5540706A (en) 1993-01-25 1996-07-30 Aust; Gilbert M. Surgical instrument
JP2665052B2 (en) 1993-05-14 1997-10-22 エスアールアイ インターナショナル Remote center positioning device
US5403347A (en) 1993-05-27 1995-04-04 United States Surgical Corporation Absorbable block copolymers and surgical articles fabricated therefrom
US5527321A (en) 1993-07-14 1996-06-18 United States Surgical Corporation Instrument for closing trocar puncture wounds
US5478344A (en) 1993-10-08 1995-12-26 United States Surgical Corporation Surgical suturing apparatus with loading mechanism
US5674230A (en) 1993-10-08 1997-10-07 United States Surgical Corporation Surgical suturing apparatus with locking mechanisms
CA2133377C (en) 1993-10-08 2004-09-14 H. Jonathan Tovey Surgical suturing apparatus with loading mechanism
US5560532A (en) 1993-10-08 1996-10-01 United States Surgical Corporation Apparatus and method for applying surgical staples to body tissue
US5569301A (en) 1993-10-08 1996-10-29 United States Surgical Corporation Surgical incision members for endoscopic suturing apparatus
US5470338A (en) 1993-10-08 1995-11-28 United States Surgical Corporation Instrument for closing trocar puncture wounds
US5853423A (en) 1993-10-20 1998-12-29 Ethicon, Inc. Process for the manufacture of suture needles and needles produced thereby
US5617952A (en) 1993-12-07 1997-04-08 Kranendonk; Donald H. Suture needle protector
US5437681A (en) 1994-01-13 1995-08-01 Suturtek Inc. Suturing instrument with thread management
FR2715057B1 (en) 1994-01-18 1996-03-01 Francis Henri Breard Overall device for stabilizing the spine.
US5766196A (en) 1994-06-06 1998-06-16 Tnco, Inc. Surgical instrument with steerable distal end
US5478345A (en) 1994-08-19 1995-12-26 United States Surgical Corporation Mechanism for endoscopic suturing device
US5938668A (en) 1994-10-07 1999-08-17 United States Surgical Surgical suturing apparatus
US5553477A (en) 1994-10-07 1996-09-10 United States Surgical Corporation Progressive die apparatus and method for forming surgical incision members
US5480406A (en) 1994-10-07 1996-01-02 United States Surgical Corporation Method of employing surgical suturing apparatus to tie knots
US5571090A (en) 1994-10-07 1996-11-05 United States Surgical Corporation Vascular suturing apparatus
US5665109A (en) 1994-12-29 1997-09-09 Yoon; Inbae Methods and apparatus for suturing tissue
US5643295A (en) 1994-12-29 1997-07-01 Yoon; Inbae Methods and apparatus for suturing tissue
US5645552A (en) 1995-01-11 1997-07-08 United States Surgical Corporation Surgical apparatus for suturing body tissue
US5665096A (en) 1995-03-07 1997-09-09 Yoon; Inbae Needle driving apparatus and methods of suturing tissue
US5755729A (en) 1995-04-27 1998-05-26 General Surgical Innovations, Inc. Magazine for loading a needle and a length of suture onto a surgical instrument
US5630825A (en) 1995-04-27 1997-05-20 De La Torre; Roger A. Magazine for loading a needle onto a stitching instrument and for loading a length of suture onto a suture dispensing instrument
US5540705A (en) 1995-05-19 1996-07-30 Suturtek, Inc. Suturing instrument with thread management
US6056771A (en) 1995-06-02 2000-05-02 United States Surgical Corporation Radiused tip surgical needles and surgical incision members
US5593421A (en) 1995-06-06 1997-01-14 Bauer; William Suture element delivery device and method
US5669490A (en) 1995-06-07 1997-09-23 United States Surgical Corporation Suture retainer
US6129741A (en) 1995-06-10 2000-10-10 Forschungszentrum Karlsruhe Gmbh Surgical suturing needle
US5713948A (en) 1995-07-19 1998-02-03 Uflacker; Renan Adjustable and retrievable graft and graft delivery system for stent-graft system
US5797927A (en) 1995-09-22 1998-08-25 Yoon; Inbae Combined tissue clamping and suturing instrument
US5707379A (en) 1995-10-20 1998-01-13 Coral Medical Method and apparatus for intracorporeal suturing
US5693071A (en) 1996-01-23 1997-12-02 United States Surgical Corporation Tapered surgical needles and surgical incision members
US5792151A (en) 1996-01-24 1998-08-11 The Ohio State University Method and apparatus for ligating a blood vessel, tissue or other bodily duct
US5860992A (en) 1996-01-31 1999-01-19 Heartport, Inc. Endoscopic suturing devices and methods
US5709693A (en) 1996-02-20 1998-01-20 Cardiothoracic System, Inc. Stitcher
US5911727A (en) 1996-02-20 1999-06-15 Cardiothoracic Systems, Inc. Stitcher
US5733293A (en) 1996-05-08 1998-03-31 United States Surgical Corporation Disposable loading unit for a vascular suturing instrument
US5792135A (en) 1996-05-20 1998-08-11 Intuitive Surgical, Inc. Articulated surgical instrument for performing minimally invasive surgery with enhanced dexterity and sensitivity
US5702408A (en) 1996-07-17 1997-12-30 Ethicon Endo-Surgery, Inc. Articulating surgical instrument
US6364888B1 (en) 1996-09-09 2002-04-02 Intuitive Surgical, Inc. Alignment of master and slave in a minimally invasive surgical apparatus
US5865836A (en) 1996-09-20 1999-02-02 United States Surgical Corporation Needle-suture combination
US5814054A (en) 1996-09-23 1998-09-29 Symbiosis Corporation Automatic needle-passer suturing instrument
US5993466A (en) 1997-06-17 1999-11-30 Yoon; Inbae Suturing instrument with multiple rotatably mounted spreadable needle holders
US5759188A (en) 1996-11-27 1998-06-02 Yoon; Inbae Suturing instrument with rotatably mounted needle driver and catcher
US5766186A (en) 1996-12-03 1998-06-16 Simon Fraser University Suturing device
US6331181B1 (en) 1998-12-08 2001-12-18 Intuitive Surgical, Inc. Surgical robotic tools, data architecture, and use
JP3035733B2 (en) 1997-03-10 2000-04-24 クロバー株式会社 Sewing needle holder and sewing needle case
US5728108A (en) 1997-03-20 1998-03-17 Tnco, Inc. Rotary drive mechanism for instrument handle
US5947982A (en) 1997-04-02 1999-09-07 Smith & Nephew, Inc. Suture-passing forceps
US5728109A (en) 1997-04-08 1998-03-17 Ethicon Endo-Surgery, Inc. Surgical knot and method for its formation
US5814069A (en) 1997-04-08 1998-09-29 Ethicon Endo-Surgery, Inc. Load assist device for a suture cartridge
US5846254A (en) 1997-04-08 1998-12-08 Ethicon Endo-Surgery, Inc. Surgical instrument for forming a knot
US6126666A (en) 1997-04-14 2000-10-03 Forschungszcutrum Karlsruhe Gmbh Device for inserting a surgical suture needle into an endoscopic suture apparatus
US5908428A (en) 1997-05-27 1999-06-01 United States Surgical Corporation Stitching devices for heart valve replacement surgery
US6231565B1 (en) 1997-06-18 2001-05-15 United States Surgical Corporation Robotic arm DLUs for performing surgical tasks
US5954731A (en) 1997-07-29 1999-09-21 Yoon; Inbae Surgical instrument with multiple rotatably mounted spreadable end effectors
IL121752A0 (en) 1997-09-11 1998-02-22 Gaber Benny Stitching tool
US5897563A (en) 1997-10-08 1999-04-27 Ethicon Endo-Surgery, Inc. Method for using a needle holder to assist in suturing
DE19744543A1 (en) 1997-10-09 1999-04-22 Braun Surgical S A B Suture material dispenser
IL123275A0 (en) 1998-02-12 1998-09-24 Urogyn Ltd Surgical suture instrument
US6016905A (en) 1998-03-06 2000-01-25 United States Surgical Corporation Surgical suture retainer package
US6138440A (en) 1998-03-06 2000-10-31 United States Surgical Corporation Surgical suture retainer package
EP1067872B1 (en) 1998-03-20 2006-03-01 Boston Scientific Limited Endoscopic suture system
US6086601A (en) 1998-04-29 2000-07-11 Yoon; Inbae Instrument and method for suturing anatomical tissue and tying suture material
US6214030B1 (en) 1998-08-10 2001-04-10 Mani, Inc. Suture needle
US6332889B1 (en) 1998-08-27 2001-12-25 Onux Medical, Inc. Surgical suturing instrument and method of use
DE19840856B4 (en) 1998-09-07 2008-04-10 Roche Diagnostics Gmbh System for obtaining a body fluid, lancet magazine, lancet, lancet set, lancing device and method for removing a lancet from a lancet magazine and use of the system
US6459926B1 (en) 1998-11-20 2002-10-01 Intuitive Surgical, Inc. Repositioning and reorientation of master/slave relationship in minimally invasive telesurgery
DE19860444C2 (en) 1998-12-28 2001-03-29 Storz Karl Gmbh & Co Kg Handle for a medical tubular shaft instrument
US7842048B2 (en) 2006-08-18 2010-11-30 Abbott Laboratories Articulating suture device and method
US6136010A (en) 1999-03-04 2000-10-24 Perclose, Inc. Articulating suturing device and method
US7235087B2 (en) 1999-03-04 2007-06-26 Abbott Park Articulating suturing device and method
US6071289A (en) 1999-03-15 2000-06-06 Ethicon Endo-Surgery, Inc. Surgical device for suturing tissue
US6481568B1 (en) 1999-03-29 2002-11-19 Ethicon, Inc. Labyrinth package for sutures
US6152934A (en) 1999-06-14 2000-11-28 Ethicon Endo-Surgery, Inc. Surgical knot tying instrument
EP1210017A4 (en) 1999-08-12 2005-06-15 Urogyn Ltd Finger-guided surgical instrument
DE19959263B4 (en) 1999-12-03 2005-03-17 Ethicon Gmbh Suture packaging
US6743239B1 (en) 2000-05-25 2004-06-01 St. Jude Medical, Inc. Devices with a bendable tip for medical procedures
US6475135B1 (en) 2000-05-25 2002-11-05 Urogyn Ltd. Finger-guided suture device
EP1435842B8 (en) 2000-09-08 2011-03-02 Abbott Vascular Inc. Device for locating a puncture hole in a liquid-carrying vessel
US6755843B2 (en) 2000-09-29 2004-06-29 Olympus Optical Co., Ltd. Endoscopic suturing device
US6719763B2 (en) 2000-09-29 2004-04-13 Olympus Optical Co., Ltd. Endoscopic suturing device
AU2002246923A1 (en) 2000-10-20 2002-07-30 Onux Medical, Inc. Surgical suturing instrument and method of use
DE60230084D1 (en) 2001-03-23 2009-01-15 Arthrex Inc Instrument for pulling a thread during arthroscopic suturing of tissue
US6783524B2 (en) 2001-04-19 2004-08-31 Intuitive Surgical, Inc. Robotic surgical tool with ultrasound cauterizing and cutting instrument
US7824401B2 (en) 2004-10-08 2010-11-02 Intuitive Surgical Operations, Inc. Robotic tool with wristed monopolar electrosurgical end effectors
US7144401B2 (en) 2001-06-07 2006-12-05 Olympus Optical Co., Ltd. Suturing device for endoscope
CN100484482C (en) 2001-06-14 2009-05-06 苏太克股份有限公司 Apparatus for surgical thread suturing
EP1408846B1 (en) 2001-06-29 2012-03-07 Intuitive Surgical Operations, Inc. Platform link wrist mechanism
US6719764B1 (en) 2001-08-24 2004-04-13 Scimed Life Systems, Inc. Forward deploying suturing device and methods of use
US7004951B2 (en) 2001-10-04 2006-02-28 Gibbens Group Llc Cycling suturing and knot-tying device
US6939358B2 (en) 2001-12-20 2005-09-06 Gore Enterprise Holdings, Inc. Apparatus and method for applying reinforcement material to a surgical stapler
US7344545B2 (en) 2002-01-30 2008-03-18 Olympus Corporation Endoscopic suturing system
GB2389313A (en) 2002-04-12 2003-12-10 Advanced Plastics Technologies Suturing apparatus with disposable head
EP1505912A4 (en) 2002-05-17 2011-04-20 Dvl Acquisition Sub Inc Surgical suturing instrument and method of use
US7232447B2 (en) 2002-06-12 2007-06-19 Boston Scientific Scimed, Inc. Suturing instrument with deflectable head
WO2004007300A2 (en) 2002-07-17 2004-01-22 Tyco Healthcare Group Lp Suture retainer package
US6936054B2 (en) 2002-07-22 2005-08-30 Boston Scientific Scimed, Inc. Placing sutures
US7041111B2 (en) 2002-08-02 2006-05-09 Boston Scientific Scimed, Inc. Placing sutures
US20040158125A1 (en) 2002-09-06 2004-08-12 Aznoian Harold M. Integrated endoscope and accessory treatment device
EP1572007B1 (en) 2002-09-09 2011-12-28 Brian Kelleher Device for endoluminal therapy
US20080132919A1 (en) 2002-10-03 2008-06-05 Faising Chui Cycling suturing and knot-tying device
US7338504B2 (en) 2002-10-03 2008-03-04 Gibbens Group, L.L.C. Cycling suturing and knot-tying device
US20100042116A1 (en) 2002-10-03 2010-02-18 Faising Chui Cycling suturing and knot-tying device
DE60308707T2 (en) 2002-10-04 2007-08-09 Tyco Healthcare Group Lp, Norwalk MEASURING CONSTRUCTION FOR SURGICAL DEVICES
US9597067B2 (en) 2002-10-04 2017-03-21 Ethicon, Inc. Packaged antimicrobial medical device and method of preparing same
US7022085B2 (en) 2002-11-20 2006-04-04 Scimed Life Systems, Inc. Medical instrument
US8187288B2 (en) 2003-03-10 2012-05-29 Boston Scientific Scimed, Inc. Re-shapeable medical device
WO2004086986A1 (en) 2003-03-28 2004-10-14 Gibbens Group Llc Leverage locking reversible cyclic suturing and knot-tying device
USD496997S1 (en) 2003-05-15 2004-10-05 Sherwood Services Ag Vessel sealer and divider
US7935128B2 (en) 2003-05-21 2011-05-03 Boston Scientific Scimed, Inc. Remotely-reloadable suturing device
US7862575B2 (en) 2003-05-21 2011-01-04 Yale University Vascular ablation apparatus and method
US7857812B2 (en) 2003-06-13 2010-12-28 Covidien Ag Vessel sealer and divider having elongated knife stroke and safety for cutting mechanism
US7166116B2 (en) 2003-06-23 2007-01-23 Ethicon, Inc. Tissue grasper/suture passer instrument
US7520382B2 (en) 2003-07-18 2009-04-21 Tyco Healthcare Group Lp Suture packaging
US20120055828A1 (en) 2003-07-18 2012-03-08 John Kennedy Suture Packaging
US8746445B2 (en) 2003-07-18 2014-06-10 Covidien Lp Suture packaging
US7637369B2 (en) 2003-07-18 2009-12-29 Tyco Healthcare Group Lp Suture packaging
WO2005069743A2 (en) 2004-01-23 2005-08-04 Chalam Mahadevan Suture needle and suture assembly
WO2005084556A1 (en) 2004-03-10 2005-09-15 Olympus Corporation Treatment tool for surgery
US8123762B2 (en) 2004-08-19 2012-02-28 Boston Scientific Scimed, Inc. Suturing instrument
US20060047309A1 (en) 2004-08-25 2006-03-02 Cichocki Frank R Jr Metal injection molded suture needles
US7976555B2 (en) 2008-07-17 2011-07-12 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US7993354B1 (en) 2010-10-01 2011-08-09 Endoevolution, Llc Devices and methods for minimally invasive suturing
WO2008147555A2 (en) 2007-05-24 2008-12-04 Suturtek Incorporated Apparatus and method for minimally invasive suturing
US8123764B2 (en) 2004-09-20 2012-02-28 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9775600B2 (en) 2010-10-01 2017-10-03 Endoevolution, Llc Devices and methods for minimally invasive suturing
EP2641549B1 (en) 2004-10-08 2015-08-12 Covidien LP An endoscopic surgical clip applier
US8512243B2 (en) 2005-09-30 2013-08-20 Abbott Diabetes Care Inc. Integrated introducer and transmitter assembly and methods of use
JP4681961B2 (en) 2005-01-14 2011-05-11 オリンパスメディカルシステムズ株式会社 Surgical instrument
US8211143B2 (en) 2005-03-31 2012-07-03 David Stefanchik Suturing device
US7699860B2 (en) 2005-04-14 2010-04-20 Ethicon Endo-Surgery, Inc. Surgical clip
US8333776B2 (en) 2005-05-20 2012-12-18 Neotract, Inc. Anchor delivery system
US20130296889A1 (en) 2005-05-20 2013-11-07 Neotract, Inc. Anchor delivery system
US7846169B2 (en) 2005-06-13 2010-12-07 Ethicon Endo-Surgery, Inc. Adjustable vacuum chamber for a surgical suturing apparatus
US8641728B2 (en) 2005-06-13 2014-02-04 Ethicon Endo-Surgery, Inc. Attachment apparatus for coupling with an endoscope
US8500756B2 (en) * 2005-06-13 2013-08-06 Ethicon Endo. Surgery, Inc. Quick load mechanism for a surgical suturing apparatus
US7628796B2 (en) 2005-06-13 2009-12-08 Ethicon Endo-Surgery, Inc. Surgical suturing apparatus with anti-backup system
US9545191B2 (en) 2005-06-13 2017-01-17 Ethicon Endo-Surgery, Inc. Method for suture lacing
US7615060B2 (en) 2005-06-13 2009-11-10 Ethicon-Endo Surgery, Inc. Endoscopic suturing device
US7766925B2 (en) 2005-06-13 2010-08-03 Ethicon Endo-Surgery, Inc. Surgical suturing apparatus
US7896890B2 (en) 2005-09-02 2011-03-01 Ethicon Endo-Surgery, Inc. Method and apparatus for endoscopically performing gastric reduction surgery in a single step
US7588583B2 (en) 2005-09-14 2009-09-15 Rhaphis Medical, Inc. Suturing device, system and method
US20070162052A1 (en) 2006-01-06 2007-07-12 Olympus Medical Systems Corp. Loading device for indwelling implement
US9144483B2 (en) 2006-01-13 2015-09-29 Boston Scientific Scimed, Inc. Placing fixation devices
JP5355094B2 (en) 2006-01-27 2013-11-27 スターテック インコーポレイテッド Tissue closure device and method
US20070225562A1 (en) 2006-03-23 2007-09-27 Ethicon Endo-Surgery, Inc. Articulating endoscopic accessory channel
US8118820B2 (en) 2006-03-31 2012-02-21 Ethicon Endo-Surgery, Inc. Method for instrument insertion through a body orifice
US7763036B2 (en) 2006-03-31 2010-07-27 Ethicon Endo-Surgery, Inc. Endoscopic instrument with secondary vacuum source
JP2013146613A (en) * 2006-03-31 2013-08-01 Ethicon Endo Surgery Inc Surgical suturing apparatus with detachable handle
US7686831B2 (en) 2006-03-31 2010-03-30 Ethicon Endo-Surgery, Inc. Method for securing a suture
US7278563B1 (en) 2006-04-25 2007-10-09 Green David T Surgical instrument for progressively stapling and incising tissue
US7862582B2 (en) 2006-05-02 2011-01-04 Ethicon Endo-Surgery, Inc. Suture management
US20070261971A1 (en) 2006-05-10 2007-11-15 Enriquez John M Iii Suture dispenser
US20090259092A1 (en) 2006-06-22 2009-10-15 Ogdahl Jason W Adjustable Sling and Method of Treating Pelvic Conditions
US7947052B2 (en) 2006-09-15 2011-05-24 Ethicon Endo-Surgery, Inc. Suturing device with angled head
EP2083702B1 (en) 2006-10-05 2019-02-13 Covidien LP Axial stitching device
US8177794B2 (en) 2006-10-05 2012-05-15 Tyco Healthcare Group Lp Flexible endoscopic stitching devices
US8702729B2 (en) 2006-10-13 2014-04-22 Boston Scientific Scimed, Inc. Placing multiple sutures
US8747304B2 (en) 2006-10-31 2014-06-10 Ethicon Endo-Surgery, Inc. Attachment apparatus for an endoscope
EP2083706B1 (en) 2006-11-07 2012-02-01 Boston Scientific Limited Delivering sutures
WO2008081474A1 (en) 2006-12-29 2008-07-10 Ashok Kumar Jayant A device for dispensing, looping and tying ligatures
EP2104459A1 (en) 2007-01-04 2009-09-30 Boston Scientific Limited Locating and occluding vessels
JP5172865B2 (en) 2007-03-15 2013-03-27 ラフィス・メディカル・インコーポレーテッド Interchangeable tip suturing device, system, and method for use with various needles
US8727197B2 (en) 2007-03-15 2014-05-20 Ethicon Endo-Surgery, Inc. Staple cartridge cavity configuration with cooperative surgical staple
US8100922B2 (en) 2007-04-27 2012-01-24 Ethicon Endo-Surgery, Inc. Curved needle suturing tool
EP2712555B1 (en) 2007-05-29 2017-08-23 Ethicon LLC Suture packaging
US9861354B2 (en) 2011-05-06 2018-01-09 Ceterix Orthopaedics, Inc. Meniscus repair
US8663253B2 (en) 2007-07-03 2014-03-04 Ceterix Orthopaedics, Inc. Methods of meniscus repair
US20100082046A1 (en) 2007-07-18 2010-04-01 Harris Jason L Device For Deploying A Fastener For Use in a Gastric Volume Reduction Procedure
US7703653B2 (en) 2007-09-28 2010-04-27 Tyco Healthcare Group Lp Articulation mechanism for surgical instrument
USD594983S1 (en) 2007-10-05 2009-06-23 Ethicon Endo-Surgery, Inc. Handle assembly for surgical instrument
US8623027B2 (en) 2007-10-05 2014-01-07 Ethicon Endo-Surgery, Inc. Ergonomic surgical instruments
US8236013B2 (en) 2007-10-19 2012-08-07 Boston Scientific Scimed, Inc. Apparatus for placing medical implants
US7922063B2 (en) 2007-10-31 2011-04-12 Tyco Healthcare Group, Lp Powered surgical instrument
EP2211725A4 (en) 2007-11-05 2015-04-01 Ceterix Orthopedics Inc Suture passing instrument and method
US20090209980A1 (en) 2008-02-19 2009-08-20 Harris Research, Llc. Suturing and knot-tying device
US10368838B2 (en) 2008-03-31 2019-08-06 Intuitive Surgical Operations, Inc. Surgical tools for laser marking and laser cutting
US8256613B2 (en) 2008-04-07 2012-09-04 Tyco Healthcare Group Lp Suture packaging for barbed sutures
US7891485B2 (en) 2008-04-11 2011-02-22 Tyco Healthcare Group Lp Suture retainer with rib members
US8021375B2 (en) 2008-04-21 2011-09-20 Conmed Corporation Surgical clip applicator
US8771295B2 (en) 2008-06-11 2014-07-08 Boston Scientific Scimed, Inc. Suturing instrument and method for uterine preservation
US20110040308A1 (en) 2008-06-13 2011-02-17 Ramiro Cabrera Endoscopic Stitching Devices
US7942886B2 (en) 2008-06-25 2011-05-17 Alfredo Alvarado Transabdominal needle introducer
US8562630B2 (en) 2008-07-18 2013-10-22 Richard Campbell Suture instrument and method
US8551122B2 (en) 2008-07-24 2013-10-08 Tufts Medical Center, Inc. Handheld safety suturing device
US20100023024A1 (en) 2008-07-25 2010-01-28 Zeiner Mark S Reloadable laparoscopic fastener deploying device with disposable cartridge for use in a gastric volume reduction procedure
US20100036415A1 (en) 2008-08-07 2010-02-11 Tyco Healthcare Group Lp Surgical needle with reduced contact area
KR101006561B1 (en) 2008-09-11 2011-01-07 포항공과대학교 산학협력단 suture device for surgical operation
WO2010031064A1 (en) 2008-09-15 2010-03-18 Clearview Patient Safety Technologies, Llc Lumbar puncture detection device
CA2745028C (en) 2008-11-25 2017-05-23 Endoevolution, Llc Apparatus and method for minimally invasive suturing
WO2010127274A1 (en) 2009-05-01 2010-11-04 Cayenne Medical, Inc. Meniscal repair systems and methods
US8292067B2 (en) 2009-06-09 2012-10-23 Tyco Healthcare Group Lp Knotless endostitch package
EP2467314A1 (en) 2009-08-17 2012-06-27 Culligan, Patrick John Apparatus for housing a plurality of needles and method of use therefor
US8196739B2 (en) 2009-08-20 2012-06-12 Tyco Healthcare Group Lp Endostitch packages
US20110046642A1 (en) 2009-08-21 2011-02-24 Coloplast A/S Suture assembly and system
US8490713B2 (en) 2009-10-06 2013-07-23 Covidien Lp Handle assembly for endoscopic suturing device
AU2010341614B2 (en) * 2009-12-22 2013-06-06 Cook Medical Technologies Llc Medical devices and methods for suturing tissue
BR112012018338B8 (en) * 2009-12-22 2021-06-22 Cook Medical Technologies Llc medical devices with swivel and detachable claws
US8307978B2 (en) 2010-03-02 2012-11-13 Covidien Lp Knotless endostitch package
MX337815B (en) 2010-06-11 2016-03-18 Ethicon Llc Suture delivery tools for endoscopic and robot-assisted surgery and methods.
US9168037B2 (en) 2010-06-17 2015-10-27 Ethicon Endo-Surgery, Inc. Laparoscopic suture device with asynchronous in-line needle movement
CN103079480B (en) 2010-06-25 2016-02-10 老板仪器有限公司 Endoscope sewing device, system and method
US20120004672A1 (en) 2010-06-30 2012-01-05 Brandon Giap Suture Straightening Device and Method
JP2012050477A (en) 2010-08-31 2012-03-15 Manii Kk Suture needle coated with silicone and method for manufacturing the same
US9125646B2 (en) 2010-11-15 2015-09-08 Ethicon Endo-Surgery, Inc. Needle for laparoscopic suturing instrument
EP2640279A1 (en) 2010-11-15 2013-09-25 Ethicon Endo-Surgery, Inc. Laparoscopic suturing instrument with perpendicular eccentric needle motion
ES2701781T3 (en) 2010-12-23 2019-02-25 Surgimatix Inc Cutaneous suture device that uses rotating needles
US8568428B2 (en) 2011-01-05 2013-10-29 Coloplast A/S Suture system and assembly including a tubular leader having a clasp
US8603089B2 (en) 2011-01-19 2013-12-10 Covidien Lp Surgical instrument including inductively coupled accessory
US8968340B2 (en) 2011-02-23 2015-03-03 Covidien Lp Single actuating jaw flexible endolumenal stitching device
US8460320B2 (en) 2011-03-03 2013-06-11 Terumo Kabushiki Kaisha Urethrovesical anastomosis suturing method using articulating laparoscopic device
WO2012121877A1 (en) 2011-03-10 2012-09-13 Boston Scientific Scimed, Inc. Flexible suturing instrument
US9113861B2 (en) 2011-05-10 2015-08-25 Ethicon Endo-Surgery, Inc. Articulating needle driver
USD716945S1 (en) 2011-05-16 2014-11-04 Ethicon Endo-Surgery, Inc. Surgical instrument
US9333025B2 (en) 2011-10-24 2016-05-10 Ethicon Endo-Surgery, Llc Battery initialization clip
WO2013142487A1 (en) 2012-03-22 2013-09-26 Cook Medical Technologies Llc Suture cartridge and method of use thereof
WO2013158622A1 (en) 2012-04-18 2013-10-24 Ethicon Endo-Surgery, Inc. Laparoscopic suturing instrument with coaxial drive shafts
US9451946B2 (en) 2012-04-18 2016-09-27 Ethicon Endo-Surgery, Llc Laparoscopic suturing instrument with parallel concentric shaft pairs
US9585655B2 (en) 2012-04-18 2017-03-07 Ethicon Endo-Surgery, Llc Laparoscopic suturing instrument with multi-drive sequenced transmission
GB201208024D0 (en) 2012-05-08 2012-06-20 Berry Alexander C Suturing device
US9820768B2 (en) 2012-06-29 2017-11-21 Ethicon Llc Ultrasonic surgical instruments with control mechanisms
US9351754B2 (en) 2012-06-29 2016-05-31 Ethicon Endo-Surgery, Llc Ultrasonic surgical instruments with distally positioned jaw assemblies
WO2014052599A1 (en) 2012-09-26 2014-04-03 Children's National Medical Center Anastomosis clipping tool with half-loop clip
US9427228B2 (en) 2012-11-09 2016-08-30 Karl Storz Gmbh & Co. Kg Suture cartridge for meniscal repair
US20140171977A1 (en) 2012-12-13 2014-06-19 Ethicon Endo-Surgery, Inc. Pawl Mechanism in Circular Needle Applier
USD709194S1 (en) 2013-01-31 2014-07-15 Ethicon Endo-Surgery, Inc. Handle for surgical instrument
US9370354B1 (en) 2013-03-11 2016-06-21 Ethicon Endo-Surgery, Llc Automated needle loader
US9125645B1 (en) 2013-03-11 2015-09-08 Ethicon Endo-Surgery, Inc. Reciprocating needle drive without cables
US20150351749A1 (en) 2014-06-06 2015-12-10 Ethicon Endo-Surgery, Inc. Needle Cartridge with Moveable Cover
US9375212B2 (en) 2014-06-06 2016-06-28 Ethicon Endo-Surgery, Llc Circular needle applier with cleats
USD771811S1 (en) 2013-03-15 2016-11-15 Ethicon Endo-Surgery, Llc Suture tray
US9554793B2 (en) 2013-03-16 2017-01-31 SafePath Medical, Inc. Means and methods for suturing tissue
ES2827249T3 (en) 2013-03-18 2021-05-20 Mininvasive Ltd Arthroscopic surgical device
WO2014162434A1 (en) 2013-04-01 2014-10-09 テルモ株式会社 Puncture device
US10136887B2 (en) 2013-04-16 2018-11-27 Ethicon Llc Drive system decoupling arrangement for a surgical instrument
US20150351745A1 (en) 2014-06-06 2015-12-10 Ethicon Endo-Surgery, Inc. Ratchet Controlled Circular Needle Driver
USD745146S1 (en) 2014-06-06 2015-12-08 Ethicon Endo-Surgery, Inc. Surgical suturing device
USD754856S1 (en) 2015-01-21 2016-04-26 Ethicon Endo-Surgery, Llc Suture cartridge
US20160346827A1 (en) 2015-05-26 2016-12-01 Ethicon Endo-Surgery, Llc Method of Fabricating a Surgical Needle with Recessed Features
US10022120B2 (en) 2015-05-26 2018-07-17 Ethicon Llc Surgical needle with recessed features
US9888914B2 (en) 2015-06-16 2018-02-13 Ethicon Endo-Surgery, Llc Suturing instrument with motorized needle drive
US9839419B2 (en) 2015-06-16 2017-12-12 Ethicon Endo-Surgery, Llc Suturing instrument with jaw having integral cartridge component

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4239308A (en) * 1979-03-29 1980-12-16 Bradley Paul W Display tray assembly
US5944724A (en) * 1997-10-30 1999-08-31 Mitek Surgical Products, Inc. Suture anchor insertion system
US20060069396A1 (en) * 2004-09-20 2006-03-30 Suturtek Incorporated Apparatus and method for minimally invasive suturing
US20130041388A1 (en) * 2011-08-14 2013-02-14 SafePath Medical, Inc. Apparatus and method for suturing tissue

Cited By (64)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9737296B1 (en) 2001-06-14 2017-08-22 Endoevolution, Llc Devices and methods for surgical suturing
US10792032B2 (en) 2001-06-14 2020-10-06 Intuitive Surgical Operations, Inc. Methods of surgical fastening
US10045774B2 (en) 2001-06-14 2018-08-14 Endoevolution, Llc Devices and methods for surgical fastening
US9962152B2 (en) 2001-06-14 2018-05-08 Endoevolution, Llc Devices and methods for surgical suturing
US20170119376A1 (en) 2001-06-14 2017-05-04 Endoevolution, Llc Devices and methods for surgical suturing
US9943308B2 (en) 2001-06-14 2018-04-17 Endoevolution, Llc Devices and methods for surgical suturing
US9943307B2 (en) 2001-06-14 2018-04-17 Endoevolution, Llc Devices and methods for surgical suturing
US9649107B2 (en) 2001-06-14 2017-05-16 Endoevolution, Llc Needle for suturing instrument
US9936945B2 (en) 2001-06-14 2018-04-10 Endoevolution, Llc Devices and methods for surgical suturing
US9693770B2 (en) 2001-06-14 2017-07-04 Endoevolution, Llc Devices and methods for surgical suturing
US9743923B2 (en) 2001-06-14 2017-08-29 Endoevolution, Llc Devices and methods for surgical suturing
US9743925B2 (en) 2001-06-14 2017-08-29 Endoevolution, Llc Devices and methods for surgical suturing
US9717495B1 (en) 2001-06-14 2017-08-01 Endoevolution, Llc Devices and methods for surgical suturing
US9717493B1 (en) 2001-06-14 2017-08-01 Endoevolution, Llc Devices and methods for surgical suturing
US9730688B1 (en) 2001-06-14 2017-08-15 Endoevolution, Llc Devices and methods for surgical suturing
US9962154B2 (en) 2004-09-20 2018-05-08 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9675339B2 (en) 2004-09-20 2017-06-13 Endoevolution, Llc Devices and methods for minimally invasive suturing
US9700301B2 (en) 2004-09-20 2017-07-11 Endoevolution, Llc Suturing needles
US11253249B2 (en) 2004-09-20 2022-02-22 Intuitive Surgical Operations, Inc. Apparatus and method for minimally invasive suturing
US11172922B2 (en) 2004-09-20 2021-11-16 Intuitive Surgical Operations, Inc. Apparatus and method for minimally invasive suturing
US10111654B2 (en) 2004-09-20 2018-10-30 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9795377B2 (en) 2004-09-20 2017-10-24 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9795376B2 (en) 2004-09-20 2017-10-24 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9808238B2 (en) 2004-09-20 2017-11-07 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9700302B2 (en) 2004-09-20 2017-07-11 Endoevolution, Llc Suturing needles
US9936944B2 (en) 2004-09-20 2018-04-10 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US10098630B2 (en) 2004-09-20 2018-10-16 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9642614B1 (en) 2004-09-20 2017-05-09 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9642613B1 (en) 2004-09-20 2017-05-09 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9962155B2 (en) 2004-09-20 2018-05-08 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9597071B1 (en) 2004-09-20 2017-03-21 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US9962153B2 (en) 2004-09-20 2018-05-08 Endoevolution, Llc Apparatus and method for minimally invasive suturing
US10383622B2 (en) 2006-01-27 2019-08-20 Endoevolution, Llc Apparatus and method for tissue closure
US10307155B2 (en) 2006-01-27 2019-06-04 Endoevolution, Llc Apparatus and method for tissue closure
US9962156B2 (en) 2006-01-27 2018-05-08 Endoevolution, Llc Suturing needle
US9986997B2 (en) 2006-01-27 2018-06-05 Endoevolution, Llc Apparatus and method for tissue closure
US11033262B2 (en) 2006-01-27 2021-06-15 Intuitive Surgical Operations, Inc. Apparatus and method for tissue closure
US10792031B2 (en) 2010-10-01 2020-10-06 Intuitive Surgical Operations, Inc. Devices and methods for minimally invasive suturing
US9962151B2 (en) 2010-10-01 2018-05-08 Endoevolution, Llc Devices and methods for minimally invasive suturing
US10881392B2 (en) 2010-10-01 2021-01-05 Intuitive Surgical Operations, Inc. Devices and methods for minimally invasive suturing
US9775600B2 (en) 2010-10-01 2017-10-03 Endoevolution, Llc Devices and methods for minimally invasive suturing
US11717283B2 (en) 2012-05-01 2023-08-08 The Brigham And Women's Hospital, Inc. Suturing device for laparoscopic procedures
US10799233B2 (en) 2012-05-01 2020-10-13 Brigham And Women's Hospital, Inc. Suturing device for laparoscopic procedures
US9986998B2 (en) 2012-12-13 2018-06-05 Ethicon Llc Cartridge interface for surgical suturing device
US10939909B2 (en) 2012-12-13 2021-03-09 Ethicon Llc Circular needle applier with articulating and rotating shaft
US9375212B2 (en) 2014-06-06 2016-06-28 Ethicon Endo-Surgery, Llc Circular needle applier with cleats
US9788830B2 (en) 2014-06-06 2017-10-17 Ethicon Llc Needle cartridge with cage
US9474522B2 (en) 2014-06-06 2016-10-25 Ethicon Endo-Surgery, Llc Jawed receiver for needle cartridge
US10004490B2 (en) 2014-06-06 2018-06-26 Ethicon Llc Force limited needle driver
US9526495B2 (en) 2014-06-06 2016-12-27 Ethicon Endo-Surgery, Llc Articulation control for surgical instruments
US10022120B2 (en) 2015-05-26 2018-07-17 Ethicon Llc Surgical needle with recessed features
USD861166S1 (en) 2015-12-10 2019-09-24 Ethicon Llc Surgical suturing device
USD800306S1 (en) 2015-12-10 2017-10-17 Ethicon Llc Surgical suturing device
US10729424B2 (en) * 2016-06-20 2020-08-04 Covidien Lp Loading fixture for use with endoscopic stitching device
US20170360431A1 (en) * 2016-06-20 2017-12-21 Covidien Lp Loading fixture for use with endoscopic stitching device
US11406372B2 (en) 2016-12-23 2022-08-09 The Brigham And Women's Hospital, Inc. Systems and methods for suturing tissue
US10542968B2 (en) 2016-12-23 2020-01-28 Brigham And Women's Hospital, Inc. Systems and methods for suturing tissue
USD865964S1 (en) 2017-01-05 2019-11-05 Ethicon Llc Handle for electrosurgical instrument
US10952767B2 (en) * 2017-02-06 2021-03-23 Covidien Lp Connector clip for securing an introducer to a surgical fastener applying apparatus
US20180221050A1 (en) * 2017-02-06 2018-08-09 Covidien Lp Connector clip for securing an introducer to a surgical fastener applying apparatus
US11253250B2 (en) 2017-02-26 2022-02-22 Intuitive Surgical Operations, Inc. Apparatus and method for minimally invasive suturing
US11039829B2 (en) 2017-07-27 2021-06-22 Intuitive Surgical Operations, Inc. Apparatus and method for minimally invasive suturing
US10292698B2 (en) 2017-07-27 2019-05-21 Endoevolution, Llc Apparatus and method for minimally invasive suturing
USD895112S1 (en) 2018-11-15 2020-09-01 Ethicon Llc Laparoscopic bipolar electrosurgical device

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US20150351756A1 (en) 2015-12-10
US20180249995A1 (en) 2018-09-06

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