Tissue sealing forceps
Abstract
A forceps includes an end effector assembly having first and second jaw members. One (or both) of the jaw members is moveable relative to the other between a spaced-apart position and an approximated position for grasping tissue therebetween. One (or both) of the jaw members includes an opposed jaw surface having an electrically-conductive tissue sealing plate disposed thereon. The electrically-conductive tissue sealing plate includes a first portion configured to conduct energy through tissue grasped between the jaw members to create a main tissue seal and a second portion including a plurality of spaced-apart fingers extending from the first portion. The second portion is configured to conduct energy through tissue grasped between the jaw members to create an auxiliary tissue seal extending from the main tissue seal for reducing stress concentrations adjacent the main tissue seal.
Claims
exact text as granted — not AI-modified1 - 16 . (canceled)
17 . A forceps, comprising:
an end effector assembly including first and second jaw members, at least one of the first or second jaw members moveable relative to the other of the first or second jaw members between a spaced-apart position and an approximated position to grasp tissue therebetween, at least one of the first or second jaw members including:
an electrically-insulative tissue-grasping surface;
an electrically-conductive tissue sealing plate disposed on the electrically-insulative tissue-grasping surface, the electrically-conductive tissue sealing plate having a U-shaped configuration and defining an interior area, wherein the electrically-conductive tissue sealing plate is oriented such that the interior area faces a distal end portion of the at least one of the first or second jaw members, the electrically-conductive tissue sealing plate configured to conduct energy through tissue grasped between the first and second jaw members to create a tissue seal; and
a plurality of discrete thermal damage elements disposed on the electrically-insulative tissue-grasping surface and positioned within the interior area, the plurality of thermal damage elements configured to conduct energy through tissue to thermally-damage tissue adjacent the tissue seal.
18 . The forceps according to claim 17 , wherein the U-shaped configuration of the electrically-conductive tissue sealing plate includes an arcuate portion.
19 . The forceps according to claim 17 , wherein the electrically-insulative tissue-grasping surface defines a first plane and wherein the electrically-conductive tissue sealing plate defines a second plane disposed in parallel orientation relative to the first plane.
20 . The forceps according to claim 19 , wherein the plurality of discrete thermal damage elements define a third plane disposed in parallel orientation relative to the first plane.
21 . The forceps according to claim 20 , wherein the second and third planes are substantially co-planar.
22 . The forceps according to claim 17 , wherein each of the plurality of thermal damage elements is surrounded by the electrically-insulative tissue-grasping surface.
23 . The forceps according to claim 17 , wherein at least one of the plurality of thermal damage elements defines a circular configuration.
24 . The forceps according to claim 17 , further comprising first and second switches, the first and second switches selectively and independently activatable for controlling the supply of energy to the electrically-conductive tissue sealing plate and the plurality of thermal damage elements, respectively.
25 . The forceps according to claim 17 , further comprising at least one additional discrete thermal damage element disposed on the electrically-insulative tissue-grasping surface and positioned outside the interior area, the at least one additional thermal damage element configured to conduct energy through tissue to thermally-damage tissue.
26 . A forceps, comprising:
an end effector assembly including first and second jaw members, at least one of the first or second jaw members moveable relative to the other of the first or second jaw members between a spaced-apart position and an approximated position to grasp tissue therebetween, at least one of the first or second jaw members including:
an electrically-insulative tissue-grasping surface;
an electrically-conductive tissue sealing plate disposed on the electrically-insulative tissue-grasping surface, the electrically-conductive tissue sealing plate having a U-shaped configuration and defining an interior area, wherein the electrically-conductive tissue sealing plate is oriented such that the interior area faces a lateral side portion of the at least one of the first or second jaw members, the electrically-conductive tissue sealing plate configured to conduct energy through tissue grasped between the first and second jaw members to create a tissue seal; and
a plurality of discrete thermal damage elements disposed on the electrically-insulative tissue-grasping surface and positioned within the interior area, the plurality of thermal damage elements configured to conduct energy through tissue to thermally-damage tissue adjacent the tissue seal.
27 . The forceps according to claim 26 , wherein the U-shaped configuration of the electrically-conductive tissue sealing plate includes an arcuate portion.
28 . The forceps according to claim 26 , wherein the electrically-insulative tissue-grasping surface defines a first plane and wherein the electrically-conductive tissue sealing plate defines a second plane disposed in parallel orientation relative to the first plane.
29 . The forceps according to claim 28 , wherein the plurality of discrete thermal damage elements define a third plane disposed in parallel orientation relative to the first plane.
30 . The forceps according to claim 29 , wherein the second and third planes are substantially co-planar.
31 . The forceps according to claim 26 , wherein each of the plurality of thermal damage elements is surrounded by the electrically-insulative tissue-grasping surface.
32 . The forceps according to claim 26 , wherein at least one of the plurality of thermal damage elements defines a circular configuration.
33 . The forceps according to claim 26 , further comprising first and second switches, the first and second switches selectively and independently activatable for controlling the supply of energy to the electrically-conductive tissue sealing plate and the plurality of thermal damage elements, respectively.
34 . The forceps according to claim 26 , further comprising at least one additional discrete thermal damage element disposed on the electrically-insulative tissue-grasping surface and positioned outside the interior area, the at least one additional thermal damage element configured to conduct energy through tissue to thermally-damage tissue.Join the waitlist — get patent alerts
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