IP Library Granted Patent US 10,307,203
Granted Patent B2
US 10,307,203 · App. 14/473,600 · Granted Jun 4, 2019

Surgical instrument

Inventor: Hayley Louise Wyatt (Conwy, GB)
Assignee: GYRUS MEDICAL LIMITED
A61B18/1445A61B18/1442A61B2018/0063
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Quick Facts
Patent No.
US 10,307,203
App. No.
14/473,600
Granted
Jun 4, 2019
Kind
B2
Abstract

An end effector assembly ( 12 ) for an electrosurgical instrument comprises a pair of opposing first and second jaw members ( 13, 14 ), at least one of the jaw members being movable relative to the other between a first open position in which the jaw members are disposed in a spaced relation relative to one another, and a second closed position in which the jaw members cooperate to grasp tissue therebetween. The first jaw member ( 13 ) includes a first tissue-contacting surface ( 17 ) and the second jaw member includes a second tissue-contacting surface ( 19 ). The first tissue-contacting surface ( 17 ) comprises a plurality of ridges ( 23 ) extending parallel to one another in a first longitudinal direction, and the second tissue-contacting surface ( 19 ) comprises a plurality of ridges ( 24 ) extending parallel to one another in a second longitudinal direction, the first longitudinal direction being different from the second longitudinal direction.

Claims (42)

1. An end effector assembly for an electrosurgical instrument, the end effector assembly comprising:

a pair of opposing a first jaw member and a second jaw member that each includes a first side edge, a second side edge, and a distal end edge, the first side edge and the second side edge being disposed on opposite sides of each of the first jaw member and the second jaw member;

the first jaw member including a first tissue-contacting surface and the second jaw member including a second tissue-contacting surface;

at least one jaw member of the first jaw member and the second jaw member being movable relative to the other jaw member between a first open position in which the first jaw member and the second jaw member are disposed in a spaced relation relative to one another, and a second closed position in which the first jaw member and the second jaw member move to grasp tissue between the first tissue-contacting surface and the second tissue-contacting surface;

the first tissue-contacting surface comprising a first plurality of ridges and a first plurality of grooves extending parallel to one another in a first direction, and the second tissue-contacting surface comprising a second plurality of ridges and a second plurality of grooves extending parallel to one another in a second direction, the first direction being different from the second direction; and

each ridge of the first plurality of ridges extending directly from the first side edge to the second side edge on the first jaw member and each ridge of the second plurality of ridges extending directly from the first side edge to the second side edge on the second jaw member,

wherein:

an entire area of the first tissue-contacting surface consists of the first plurality of ridges and the first plurality of grooves and an entire area of the second tissue-contacting surface consists of the second plurality of ridges and the second plurality of grooves.

2. The end effector assembly according to claim 1 , wherein the first tissue-contacting surface and the second tissue-contacting surface are adapted to be connected to a source of electrosurgical energy such that they form a first electrode and a second electrode for conducting electrosurgical energy through a tissue held between the first jaw member and the second jaw member.

3. The end effector assembly according to claim 1 , wherein the first plurality of ridges on the first tissue-contacting surface and the second plurality of ridges on the second tissue-contacting surface are such that an angle between the first direction and the second direction is greater than 45 degrees.

4. The end effector assembly according to claim 1 , wherein the first plurality of ridges on the first tissue-contacting surface and the second plurality of ridges on the second tissue-contacting surface are such that an angle between the first direction and the second direction is greater than 60 degrees.

5. The end effector assembly according to claim 1 , wherein the first plurality of ridges on the first tissue-contacting surface and the second plurality of ridges on the second tissue-contacting surface are such that an angle between the first direction and the second direction is between 80 and 100 degrees.

6. The end effector assembly according to claim 1 , wherein the first plurality of ridges on the first tissue-contacting surface and the second plurality of ridges on the second tissue-contacting surface are such that an angle between the first direction and the second directions is substantially 90 degrees.

7. The end effector assembly according to claim 1 , wherein the first jaw member and the second jaw member are substantially linear having a longitudinal jaw axis.

8. The end effector assembly according to claim 7 , wherein the first plurality of ridges on the first tissue-contacting surface are such that the first direction is parallel to the longitudinal jaw axis.

9. The end effector assembly according to claim 7 , wherein the second plurality of ridges on the second tissue-contacting surface are such that the second direction is orthogonal to the longitudinal jaw axis.

10. The end effector assembly according to claim 1 , wherein the first jaw member and the second jaw member are curved, having a first longitudinal jaw axis and a second longitudinal jaw axis, respectively, in a form of a proximal longitudinal jaw axis at a proximal end of the first jaw member and the second jaw member and a distal longitudinal jaw axis at a distal end of the first jaw member and the second jaw member.

11. The end effector assembly according to claim 10 , wherein the first plurality of ridges on the first tissue-contacting surface are such that the first direction is parallel to the proximal longitudinal jaw axis.

12. The end effector assembly according to claim 11 , wherein the second plurality of ridges on the second tissue-contacting surface are such that the second direction is orthogonal to the proximal longitudinal jaw axis.

13. The end effector assembly according to claim 1 , wherein each of the first tissue-contacting surface and the second tissue-contacting surface contains at least four ridges.

14. An electrosurgical instrument comprising a handle, a shaft extending from the handle, and the end effector assembly according to claim 1 .

15. An electrosurgical instrument comprising:

a handle;

an elongate shaft extending from the handle along a longitudinal shaft axis; and

an end effector assembly located at a distal end of the elongate shaft, the end effector assembly comprising:

a pair of opposing a first jaw member and a second jaw member that each includes a first side edge, a second side edge, and a distal end edge, the first side edge and the second side edge being disposed on opposite sides of each of the first jaw member and the second jaw member;

the first jaw member including a first tissue-contacting surface and the second jaw member including a second tissue-contacting surface;

at least one jaw member of the first jaw member and the second jaw member being movable relative to the other jaw member between a first open position in which the first jaw member and the second jaw member are disposed in a spaced relation relative to one another, and a second closed position in which the first jaw member and the second jaw member move to grasp tissue between the first tissue-contacting surface and the second tissue-contacting surface;

the first tissue-contacting surface comprising a first plurality of ridges and a first plurality of grooves extending parallel to one another in a first direction, and the second tissue-contacting surface comprising a second plurality of ridges and a second plurality of grooves extending parallel to one another in a second direction, the first direction being different from the second direction; and

each ridge of the first plurality of ridges extending directly from the first side edge to the second side edge on the first jaw member and each ridge of the second plurality of ridges extending directly from the first side edge to the second side edge on the second jaw member,

wherein:

an entire area of the first tissue-contacting surface consists of the first plurality of ridges and the first plurality of grooves and an entire area of the second tissue-contacting surface consists of the second plurality of ridges and the second plurality of grooves.

16. The end effector assembly according to claim 15 , wherein the first plurality of ridges on the first tissue-contacting surface are such that the first direction is parallel to the longitudinal shaft axis.

17. The end effector assembly according to claim 15 , wherein the second plurality of ridges on the second tissue-contacting surface are such that the second direction is orthogonal to the longitudinal shaft axis.

18. An end effector assembly for an electrosurgical instrument, the end effector assembly comprising:

a pair of opposing a first jaw member and a second jaw member that each includes a first side edge, a second side edge, and a distal end edge, the first side edge and the second side edge being disposed on opposite sides of each of the first jaw member and the second jaw member;

the first jaw member including a first tissue-contacting surface and the second jaw member including a second tissue-contacting surface;

at least one jaw member of the first jaw member and the second jaw member being movable relative to the other jaw member between a first open position in which the first jaw member and the second jaw member are disposed in a spaced relation relative to one another, and a second closed position in which the first jaw member and the second jaw member are brought together such that in use they move to grasp tissue between the first tissue-contacting surface and the second tissue-contacting surface;

the first tissue-contacting surface comprising a first plurality of ridges and a first plurality of grooves, and the second tissue-contacting surface comprising a second plurality of ridges and a second plurality of grooves, the first plurality of ridges on the first tissue-contacting surface and the second plurality of ridges on the second tissue-contacting surface are arranged such that the first tissue-contacting surface and the second tissue-contacting surface move to grasp a section of tissue, the first plurality of ridges on the first tissue-contacting surface and the second plurality of ridges on the second tissue-contacting surface extend in different directions; and

each ridge of the first plurality of ridges extending directly from the first side edge to the second side edge on the first jaw member and each ridge of the second plurality of ridges directly extending from the first side edge to the second side edge on the second jaw member,

wherein:

an entire area of the first tissue-contacting surface consists of the first plurality of ridges and the first plurality of grooves and an entire area of the second tissue-contacting surface consists of the second plurality of ridges and the second plurality of grooves.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2023
From: GYRUS MEDICAL LIMITED
To: GYRUS ACMI, INC
Reel/Frame 066000/0508 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2014
From: WYATT, HAYLEY LOUISE
To: GYRUS MEDICAL LIMITED
Reel/Frame 033761/0694 →
Priority Claims (1)
GB 1401194.4 · Jan 24, 2014 · national
Continuity (1)
Related Publication 20150209102A1 · Jul 30, 2015
Cited By (6)
US 12,295,644 US 12,390,264 US 12,471,982 US 12,508,021 US 12,521,164 US 12,582,460