Nova Patents
EP1535581A2

Vessel sealer and divider

Abstract

An electrosurgical instrument for performing at least one of sealing and dividing tissue, comprising: a housing having a shaft attached thereto, the shaft defining a longitudinal axis;a first jaw member movable relative to a second jaw member, the first jaw member attached to the shaft and being relatively movable from a first open position wherein the jaw members are disposed in spaced relation relative to one another to a second closed position wherein the jaw members cooperate to grasp tissue therebetween;a drive rod assembly which imparts movement of the jaw members between the first and second positions;a rotating assembly attached to the housing which selectively rotates the jaw members about the longitudinal axis;a knife assembly attached to the housing which selectively separates tissue grasped between the jaw members;a handle assembly attached to the housing which selectively actuates the drive rod assembly;first and second electrical leads which connect the jaw members to a source of electrical energy such that the jaw members are capable of conducting energy through tissue held therebetween; anda handswitch attached to the housing which allows a user to selectively energize the jaw members.

EP1535581A2, drawing sheet 1
Sheet 1 of 24

Term

Term ended

Projected expiry passed 6 April 2021, 5.5 years ago.

  1. Priority and filed
  2. Published
  3. Projected expiry
  4. Today

14 claims: 9 independent, 5 dependent

  1. 1
    An electrosurgical instrument for performing at least one of sealing and dividing tissue, comprising:a housing having a shaft attached thereto, the shaft defining a longitudinal axis;a first jaw member movable relative to a second jaw member, the first jaw member attached to the shaft and being relatively movable from a first open position wherein the jaw members are disposed in spaced relation relative to one another to a second closed position wherein the jaw members cooperate to grasp tissue therebetween;a drive rod assembly which imparts movement of the jaw members between the first and second positions;a rotating assembly attached to the housing which selectively rotates the jaw members about the longitudinal axis;a knife assembly attached to the housing which selectively separates tissue grasped between the jaw members;a handle assembly attached to the housing which selectively actuates the drive rod assembly;first and second electrical leads which connect the jaw members to a source of electrical energy such that the jaw members are capable of conducting energy through tissue held therebetween;and a handswitch attached to the housing which allows a user to selectively energize the jaw members.
  2. 2
    An electrosurgical instrument for performing at least one of sealing and dividing tissue, comprising:a housing having a shaft attached thereto, the shaft defining a longitudinal axis;a first jaw member movable relative to a second jaw member, the first jaw member attached to the shaft and being relatively movable from a first open position wherein the jaw members are disposed in spaced relation relative to one another to a second closed position wherein the jaw members cooperate to grasp tissue therebetween;a drive rod assembly which imparts movement of the jaw members between the first and second positions;a rotating assembly attached to the housing which selectively rotates the jaw members about the longitudinal axis;a knife assembly attached to the housing which selectively separates tissue grasped between the jaw members;a handle assembly attached to the housing which selectively actuates the drive rod assembly;first and second leads which connect the jaw members to a source of electrical energy;and a handswitch attached to the housing which allows a user to selectively apply electrical energy to heat the jaw members to seal tissue disposed therebetween.
  3. 5
    An electrosurgical instrument according to any one of the preceding claims, wherein said handswitch allows a user to selectively and independently activate both the jaw members and the knife assembly.
  4. 7
    An electrosurgical instrument according to any one of the preceding claims, wherein said handswitch includes a wafer switch positioned to facilitate activation by a user's thumb.
  5. 8
    An endoscopic bipolar forceps for sealing and dividing tissue, comprising:an elongated shaft having opposing jaw members at a distal end thereof, the jaw members being movable relative to one another from a first position wherein the jaw members are disposed in spaced relation relative to one another to a second position wherein the jaw members cooperate to grasp tissue therebetween, said jaw members including an outer peripheral surface made from material that reduces tissue adherence;a source of electrical energy connected to each jaw member such that the jaw members are capable of conducting energy through tissue held therebetween to effect a seal;a distally advanceable knife which selectively separates tissue proximate the seal;and at least one non-conductive stop member disposed on an inner facing surface of at least one of the jaw members which controls the distance between the jaw members when tissue is held therebetween.
  6. 9
    An endoscopic bipolar forceps for sealing and dividing tissue, comprising:an elongated shaft having opposing jaw members at a distal end thereof, the jaw members being movable relative to one another from a first position wherein the jaw members are disposed in spaced relation relative to one another to a second position wherein the jaw me3mbers cooperate to grasp tissue therebetween, each jaw member including an electrically conductive sealing surface having a non-stick coating disposed thereon to reduce tissue adherence;each jaw member adapted to electrically couple to a source of electrical energy such that the jaw members are capable of conducting energy through tissue held therebetween to effect a seal;a longitudinally reciprocating knife disposed within the elongated shaft, the knife being selectively advanceable to sever tissue proximate the seal;and at least one non-conductive stop member operatively associated with the electrically conductive surface of at least one of the jaw members, the at least one non-conductive stop member being dimensioned to control the distance between the jaw members when tissue is held therebetween, wherein the at least one non-conductive stop member creates a gap between the electrically conductive sealing surfaces within the range of about 0.001 inches to about 0.006 inches.
  7. 12
    An endoscopic bipolar forceps for sealing and dividing tissue, comprising:an elongated shaft having opposing jaw members at a distal end thereof, the jaw members being movable relative to one another from a first position wherein the jaw members are disposed in spaced relation relative to one another to a second position wherein the jaw members cooperate to grasp tissue therebetween;a source of electrical energy connected to each jaw member such that the jaw members are capable of conducting energy through tissue held therebetween to effect a seal;a distally advanceable knife which selectively separates tissue proximate the seal;and a pair of non-conductive stop members disposed on an inner facing surface of at least one of the jaw members and at least one additional stop member disposed on the same inner facing surface of the same jaw member positioned in spaced relation to said pair of non-conductive stop members, said non-conductive stop members serving to determine the distance between the jaw members when tissue is held therebetween.
  8. 13
    An endoscopic bipolar forceps for sealing and dividing tissue, comprising:an elongated shaft having opposing jaw members at a distal end thereof, the jaw members being movable relative to one another from a first position wherein the jaw members are disposed in spaced relation relative to one another to a second position wherein the jaw members cooperate to grasp tissue therebetween, each jaw member including an electrically conductive sealing surface made from a material designed to reduce tissue adherence;each jaw member adapted to electrically couple to a source of electrical energy such that the jaw members are capable of conducting energy through tissue held therebetween to effect a seal;a longitudinally reciprocating knife disposed within the elongated shaft, the knife being selectively advanceable to sever tissue proximate the seal;and a handle assembly being dimensioned to maintain a closure pressure in the range of about 3 kg/cm 2 to about 16 kg/cm 2 between the electrically conductive sealing surfaces;and at least one non-conductive stop member operatively associated with the electrically conductive surface of at least one of the jaw members, the at least one non-conductive stop member being dimensioned to control the distance between the jaw members when tissue is held therebetween, wherein the at least one non-conductive stop member creates a gap between the electrically conductive sealing surfaces within the range of about 0.001 inches to about 0.006 inches.
  9. 14
    A bipolar forceps for sealing and dividing tissue, comprising:a handle assembly having first and second jaw members attached to a distal end thereof, the handle assembly being operable to selectively move the jaw members relative to one another from a first position wherein the jaw members are disposed in spaced relation relative to one another to at least one subsequent position wherein the jaw members cooperate to grasp tissue therebetween;each jaw member being adapted to electrically couple to a source of electrical energy such that he jaw members are capable of conducting energy through tissue held therebetween to effect a tissue seal;a knife operatively associated with the handle assembly, the knife being selectively advanceable to sever tissue proximate the tissue seal;and at least one non-conductive stop member operatively associated with the electrically conductive surface of at least one of the jaw members, the at least one non-conductive stop member being dimensioned to create a gap between the electrically conductive sealing surfaces within the range of about 0.001 inches to about 0.006 inches.