IP Library Granted Patent US 11,918,211
Granted Patent B2
US 11,918,211 · App. 16/234,782 · Granted Mar 5, 2024

Surgical stapling instrument for use with a robotic system

Inventors: James R. Giordano (Milford, OH); Jeffrey S. Swayze (West Chester, OH); Frederick E. Shelton, IV (Hillsboro, OH)
Assignee: Cilag GmbH International
A61B17/07207A61B17/00234A61B17/068A61B17/295A61B17/32A61B17/320092A61B2017/00022A61B2017/00039A61B2017/00212A61B2017/00221A61B2017/00362A61B2017/00398A61B2017/00473A61B2017/00477A61B2017/00685A61B2017/00734A61B17/072A61B2017/07214A61B2017/07271A61B2017/07278A61B2017/07285A61B17/105A61B17/1222A61B2017/2927A61B2017/2943A61B2017/320093A61B2017/320094A61B2017/320095A61B2017/320097A61B2034/2053A61B2034/2059A61B2034/2072A61B34/30A61B2034/302A61B34/71A61B50/36A61B2090/065A61B2090/0811A61B2090/0814A61B90/98A61B2562/028B65B5/04B65B55/16B65B55/18
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Quick Facts
Patent No.
US 11,918,211
App. No.
16/234,782
Granted
Mar 5, 2024
Kind
B2
Abstract

A surgical instrument for use with a robotic system that has a control unit and a shaft portion that includes an electrically conductive elongated member that is attached to a portion of the robotic system. The elongated member is configured to transmit control motions from the robotic system to an end effector.

Claims (68)

1. A surgical stapling instrument for use with a robotic system, comprising:

a housing comprising rotary drivers;

a shaft;

an end effector; comprising:

a first jaw; and

a second jaw rotatable relative to the first jaw;

an articulation joint, wherein the end effector is rotatable relative to the shaft about the articulation joint;

a closure drive configured to move the second jaw toward the first jaw, wherein the closure drive is driveable by a first one of the rotary drivers, and wherein the closure drive comprises:

a rotary closure driver configured to rotate based on the actuation of the first one of the rotary drivers; and

a translatable closure driver longitudinally translatable based on the rotation of the rotary closure driver, wherein the second jaw is rotatable toward the first jaw based on the longitudinal translation of the translatable closure driver, and wherein the rotary closure driver is rotatable relative to the shaft;

a firing drive configured to transmit a firing motion, wherein the firing drive comprises a rotatable drive shaft to drive a threaded drive screw, wherein a sled is pushed distally by the threaded drive screw during the firing motion, wherein the firing drive is driveable by a second one of the rotary drivers, and wherein the rotatable drive shaft is rotatable relative to the shaft; and

an articulation linear drive configured to articulate and straighten the end effector relative to the shaft.

2. The surgical stapling instrument of claim 1 , wherein the end effector further comprises a staple cartridge including staples removably stored therein, and wherein the staples are deployable from the staple cartridge based on the sled being pushed distally by the threaded drive screw.

3. The surgical stapling instrument of claim 1 , wherein the articulation linear drive comprises:

a first articulation driver configured to rotate the end effector in a first direction about the articulation joint; and

a second articulation driver configured to rotate the end effector in a second direction about the articulation joint, wherein the second direction is different than the first direction.

4. The surgical stapling instrument of claim 3 , wherein the first articulation driver and the second articulation driver are vertically offset.

5. A surgical stapling instrument for use with a robotic system, comprising:

a housing comprising rotary inputs;

a shaft;

an end effector, comprising:

a first jaw; and

a second jaw rotatable relative to the first jaw;

an articulation joint, wherein the end effector is rotatable relative to the shaft about the articulation joint;

a closure drive configured to move the second jaw toward the first jaw, wherein the closure drive is driveable by a first one of the rotary inputs, and wherein the closure drive comprises:

a rotary closure driver configured to rotate based on the actuation of the first one of the rotary inputs; and

a translatable closure driver longitudinally translatable based on the rotation of the rotary closure driver, wherein the second jaw is rotatable toward the first jaw based on the longitudinal translation of the translatable closure driver, and wherein the rotary closure driver is rotatable relative to the shaft;

a firing drive configured to transmit a firing motion, wherein the firing drive comprises a rotatable drive shaft to rotate a threaded drive screw, wherein a sled is pushed toward a distal position by the threaded drive screw during the firing motion, wherein the firing drive is driveable by a second one of the rotary inputs, and wherein the rotatable drive shaft is rotatable relative to the shaft; and

an articulation linear drive configured to articulate and straighten the end effector relative to the shaft.

6. The surgical stapling instrument of claim 5 , further comprising a staple cartridge.

7. The surgical stapling instrument of claim 6 , wherein the staple cartridge includes staples removably stored therein, and wherein the staples are deployable from the staple cartridge based on the sled moving toward the distal position.

8. The surgical stapling instrument of claim 5 , wherein the articulation linear drive comprises:

a first articulation driver configured to rotate the end effector in a first direction about the articulation joint; and

a second articulation driver configured to rotate the end effector in a second direction about the articulation joint, wherein the second direction is different than the first direction.

9. The surgical stapling instrument of claim 8 , wherein the first articulation driver and the second articulation driver are vertically offset.

10. A surgical stapling instrument for use with a remote console, comprising:

a housing comprising rotary drivers;

a shaft;

an end effector, comprising:

a first jaw; and

a second jaw rotatable relative to the first jaw;

an articulation pivot, wherein the end effector is pivotable relative to the shaft about the articulation pivot;

a closure drive configured to move the second jaw toward the first jaw, wherein the closure drive is driveable by a first one of the rotary drivers, and wherein the closure drive comprises:

a rotatable closure driver configured to rotate based on the actuation of the first one of the rotary drivers; and

a translatable closure driver configured to longitudinally translate based on the rotation of the rotatable closure driver, wherein the second jaw is rotatable toward the first jaw based on the longitudinal translation of the translatable closure driver, and wherein the rotatable closure driver is rotatable relative to the shaft;

a firing drive configured to transmit a firing motion, wherein the firing drive comprises a rotatable drive shaft to drive a threaded drive screw, wherein a sled is pushed distally by the threaded drive screw during the firing motion, wherein the firing drive is driveable by a second one of the rotary drivers, and wherein the rotatable drive shaft is rotatable relative to the shaft; and

an articulation linear drive configured to articulate and straighten the end effector relative to the shaft.

11. The surgical stapling instrument of claim 10 , wherein the end effector further comprises a staple cartridge including staples removably stored therein, and wherein the staples are deployable from the staple cartridge based on the sled being pushed distally by the threaded drive screw.

12. The surgical stapling instrument of claim 10 , wherein the articulation linear drive comprises:

a first articulation driver configured to rotate the end effector in a first direction about the articulation pivot; and

a second articulation driver configured to rotate the end effector in a second direction about the articulation pivot, wherein the second direction is different than the first direction.

13. The surgical stapling instrument of claim 12 , wherein the first articulation driver and the second articulation driver are vertically offset.

14. A surgical stapling instrument for use with a control interface, comprising:

a housing comprising rotary drivers;

a shaft;

an end effector; comprising:

a first jaw; and

a second jaw rotatable relative to the first jaw;

an articulation pivot, wherein the end effector is pivotable relative to the shaft about the articulation pivot;

a closure drive configured to move the second jaw toward the first jaw, wherein the closure drive is driveable by a first one of the rotary drivers, and wherein the closure drive comprises:

a rotatable closure driver configured to rotate based on the actuation of the first one of the rotary drivers; and

a translatable closure driver longitudinally translatable based on the rotation of the rotatable closure driver, wherein the second jaw is rotatable toward the first jaw based on the longitudinal translation of the translatable closure driver, and wherein the rotatable closure driver is rotatable relative to the shaft;

a firing drive configured to transmit a firing motion, wherein the firing drive comprises a rotatable drive shaft to rotate a threaded drive screw, wherein a sled is pushed distally by the threaded drive screw during the firing motion, wherein the firing drive is driveable by a second one of the rotary drivers, and wherein the rotatable drive shaft is rotatable relative to the shaft; and

an articulation linear drive configured to articulate and straighten the end effector relative to the shaft.

15. The surgical stapling instrument of claim 14 , wherein the end effector further comprises a staple cartridge including staples removably stored therein, and wherein the staples are deployable from the staple cartridge based on the sled being pushed distally by the threaded drive screw.

16. The surgical stapling instrument of claim 14 , wherein the articulation linear drive comprises:

a first articulation driver configured to rotate the end effector in a first direction about the articulation pivot; and

a second articulation driver configured to rotate the end effector in a second direction about the articulation pivot, wherein the second direction is different than the first direction.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2021
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 056601/0339 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2020
From: GIORDANO, JAMES R.; SWAYZE, JEFFREY S.; SHELTON, FREDERICK E., IV
To: ETHICON LLC
Reel/Frame 052557/0368 →