IP Library Granted Patent US 12,402,934
Granted Patent B2
US 12,402,934 · App. 17/014,002 · Granted Sep 2, 2025

Electrosurgical instrument for grasping, treating, and/or dividing tissue incorporating thermal management feature

Inventors: Kelley D. Goodman (Erie, CO); Craig V. Krastins (Arvada, CO); Grant T. Sims (Boulder, CO); Daniel W. Mercier (Erie, CO); Jennifer L. Rich (Parker, CO)
Assignee: Covidien LP
A61B18/1442A61B2018/00023A61B2018/00077A61B2018/00589A61B2018/00595A61B2018/0063
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Quick Facts
Patent No.
US 12,402,934
App. No.
17/014,002
Granted
Sep 2, 2025
Kind
B2
Abstract

An electrosurgical instrument includes at least one shaft member, an end effector assembly extending distally from the at least one shaft member, and a heat pipe. The end effector assembly includes first and second jaw members, each including an electrically-conductive tissue-contacting surface. At least one of the first or second jaw members is movable relative to the other about a pivot between a spaced-apart position and an approximated position for grasping tissue between the electrically-conductive tissue-contacting surfaces. The heat pipe includes a proximal body portion and a flattened distal portion. The proximal body portion extends through at least a portion of the at least one shaft member, and the flattened distal portion extends through at least a portion of the first jaw member. The heat pipe is configured to facilitate drawing heat proximally from the end effector assembly.

Claims (32)

1. An electrosurgical instrument, comprising:

at least one shaft member;

an end effector assembly extending distally from the at least one shaft member, the end effector assembly including first and second jaw members, each of the first and second jaw members including an electrically-conductive tissue-contacting surface, at least one of the first or second jaw members movable relative to the other about a pivot between a spaced-apart position and an approximated position for grasping tissue between the electrically-conductive tissue-contacting surfaces; and

a heat pipe including a proximal body portion having a first cross-sectional configuration and a flattened distal portion having a second cross-sectional configuration that is flattened relative to the first cross-sectional configuration, the proximal body portion extending through at least 40% of the at least one shaft member, and the flattened distal portion extending through at least a substantial portion of the first jaw member, the heat pipe defining an internal lumen configured to circulate a cooling fluid between the proximal body portion and the flattened distal portion to facilitate drawing heat proximally from the end effector assembly,

wherein the second cross-sectional configuration constricts the internal lumen in the flattened distal portion of the heat pipe to reduce or inhibit flow of the cooling fluid through the flattened distal portion relative to flow of the cooling fluid through the proximal body portion.

2. The electrosurgical instrument according to claim 1 , wherein the distal flattened portion of the heat pipe defines a spatula-shaped configuration.

3. The electrosurgical instrument according to claim 1 , wherein the distal flattened portion of the heat pipe includes an upper surface defining a plane disposed in parallel orientation relative to and underneath a plane defined by the electrically-conductive tissue-contacting surface of the first jaw member.

4. The electrosurgical instrument according to claim 1 , wherein the at least one shaft member includes an inner frame and an outer housing, and wherein the proximal body portion of the heat pipe extends through the outer housing and at least one of: alongside, above, below, or through the inner frame.

5. The electrosurgical instrument according to claim 1 , wherein a length of the distal flattened portion of the heat pipe is configured in accordance with a length of the electrically-conductive tissue-contacting surface of the first jaw member.

6. The electrosurgical instrument according to claim 1 , wherein a length of the heat pipe is configured in accordance with a length of the electrically-conductive tissue-contacting surface of the first jaw member.

7. The electrosurgical instrument according to claim 1 , wherein a cross-sectional area of the heat pipe is configured in accordance with an exposed surface area of the electrically-conductive tissue-contacting surface of the first jaw member.

8. The electrosurgical instrument according to claim 1 , wherein the flattened distal portion of the heat pipe is disposed proximate the electrically-conductive tissue-contacting surface of the end effector assembly.

9. An electrosurgical instrument, comprising:

first and second shaft members movable relative to one another about a pivot;

first and second jaw members extending distally from the first and second shaft members, respectively, each of the first and second jaw members including an electrically-conductive tissue-contacting surface, wherein movement of the first and second shaft members relative to one another from an open position to a closed position moves the first and second jaw members relative to one another from a spaced-apart position to an approximated position for grasping tissue between the electrically-conductive tissue-contacting surfaces; and

a heat pipe including a proximal body portion having a first cross-sectional configuration and a flattened distal portion having a second cross-sectional configuration that is flattened relative to the first cross-sectional configuration, the proximal body portion extending through at least 40% of the first shaft member, and the flattened distal portion extending through at least a substantial portion of the first jaw member, the heat pipe defining an internal lumen configured to circulate a cooling fluid between the proximal body portion and the flattened distal portion to facilitate drawing heat proximally from the first and second jaw members,

wherein the second cross-sectional configuration constricts the internal lumen in the flattened distal portion of the heat pipe to reduce or inhibit flow of the cooling fluid through the flattened distal portion relative to flow of the cooling fluid through the proximal body portion.

10. The electrosurgical instrument according to claim 9 , wherein the distal flattened portion of the heat pipe defines a spatula-shaped configuration.

11. The electrosurgical instrument according to claim 9 , wherein the distal flattened portion of the heat pipe includes an upper surface defining a plane disposed in parallel orientation relative to and underneath a plane defined by the electrically-conductive tissue-contacting surface of the first jaw member.

12. The electrosurgical instrument according to claim 9 , wherein the first shaft member includes an inner frame and an outer housing, and wherein the proximal body portion of the heat pipe extends through the outer housing and at least one of: alongside, above, below, or through the inner frame.

13. The electrosurgical instrument according to claim 9 , wherein a length of the distal flattened portion of the heat pipe is configured in accordance with a length of the electrically-conductive tissue-contacting surface of the first jaw member.

14. The electrosurgical instrument according to claim 9 , wherein a length of the heat pipe is configured in accordance with a length of the electrically-conductive tissue-contacting surface of the first jaw member.

15. The electrosurgical instrument according to claim 9 , wherein a cross-sectional area of the heat pipe is configured in accordance with an exposed surface area of the electrically-conductive tissue-contacting surface of the first jaw member.

16. The electrosurgical instrument according to claim 9 , wherein the flattened distal portion of the heat pipe is disposed proximate the electrically-conductive tissue-contacting surface of the first jaw member.

17. An electrosurgical instrument, comprising:

at least one shaft member;

an end effector assembly extending distally from the at least one shaft member, the end effector assembly including first and second jaw members, each of the first and second jaw members including an electrically-conductive tissue-contacting surface, at least one of the first or second jaw members movable relative to the other about a pivot between a spaced-apart position and an approximated position for grasping tissue between the electrically-conductive tissue-contacting surfaces; and

a heat pipe including a proximal body portion having a first cross-sectional configuration and a flattened distal portion having a second cross-sectional configuration that is flattened relative to the first cross-sectional configuration, the proximal body portion extending through at least 40% of the at least one shaft member, and the flattened distal portion extending substantially a length of the electrically-conductive tissue contacting surface through the first jaw member, the heat pipe defining an internal lumen configured to circulate a cooling fluid between the proximal body portion and the flattened distal portion to facilitate drawing heat proximally from the end effector assembly,

wherein the second cross-sectional configuration constricts the internal lumen in the flattened distal portion of the heat pipe to reduce or inhibit flow of the cooling fluid through the flattened distal portion relative to flow of the cooling fluid through the proximal body portion.

18. The electrosurgical instrument according to claim 17 , wherein the distal flattened portion of the heat pipe defines a spatula-shaped configuration.

19. The electrosurgical instrument according to claim 17 , wherein the distal flattened portion of the heat pipe includes an upper surface defining a plane disposed in parallel orientation relative to and underneath a plane defined by the electrically-conductive tissue-contacting surface of the first jaw member.

20. The electrosurgical instrument according to claim 17 , wherein the at least one shaft member includes an inner frame and an outer housing, and wherein the proximal body portion of the heat pipe extends through the outer housing and at least one of: alongside, above, below, or through the inner frame.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2020
From: GOODMAN, KELLEY D.; KRASTINS, CRAIG V.; MERCIER, DANIEL W.; SIMS, GRANT T.; RICH, JENNIFER L.
To: COVIDEN LP
Reel/Frame 053709/0487 →
Continuity (2)
Provisional Application 62900573 · Sep 15, 2019
Related Publication 20210077178A1 · Mar 18, 2021
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