IP Library Granted Patent US 11,452,525
Granted Patent B2
US 11,452,525 · App. 16/895,273 · Granted Sep 27, 2022

Surgical instrument comprising an adjustment system

Inventors: Frederick E. Shelton, IV (Hillsboro, OH); Jason L. Harris (Lebanon, OH)
Assignee: Cilag GmbH International
A61B17/072A61B90/98A61B2017/00017A61B2017/00398A61B2017/07264A61B2017/07271A61B2017/07278A61B2017/07285
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Quick Facts
Patent No.
US 11,452,525
App. No.
16/895,273
Granted
Sep 27, 2022
Kind
B2
Abstract

A surgical instrument comprising an adjustment system is disclosed.

Claims (106)

1. A surgical instrument system, comprising:

a surgical instrument assembly configured to be attached to an actuation interface, wherein said surgical instrument assembly comprises:

a shaft;

an end effector attached to said shaft; and

a memory; and

a control circuit configured to run said actuation interface, wherein said control circuit is configured to:

receive calibration parameters from said memory based on said surgical instrument assembly;

update a motor control program based on said received calibration parameters.

2. A surgical instrument system, comprising:

a surgical instrument assembly configured to be attached to an actuation interface, wherein said surgical instrument assembly comprises:

a shaft;

an end effector attached to said shaft; and

a memory; and

a control circuit configured to run said actuation interface, wherein said control circuit is configured to:

receive component identifiers from said memory based on said surgical instrument assembly; and

determine a motor control program based on said received component identifiers.

3. A surgical instrument system, comprising:

a surgical instrument assembly configured to be attached to an actuation interface, wherein said surgical instrument assembly comprises:

a modular shaft comprising a first memory; and

a modular end effector comprising a second memory, wherein said modular end effector is configured to be attached to said modular shaft; and

a control circuit configured to run said actuation interface, wherein said control circuit is configured to:

receive a first component-specific information from said first memory and a second component-specific information from said second memory; and

determine a motor control program based on said received first component-specific information and said received second component-specific information.

4. A surgical instrument system, comprising:

a surgical instrument assembly comprising a plurality of sub-systems;

a control interface, comprising:

an attachment portion, wherein said surgical instrument assembly is configured to be attached to said attachment portion; and

one or more motors configured to actuate said plurality of sub-systems; and

a control circuit configured to:

identify each sub-system of said surgical instrument assembly when said surgical instrument assembly is attached to said attachment portion;

actuate each sub-system through a test stroke; and

generate one or more control programs according to said test stroke.

5. The surgical instrument system of claim 4 , wherein said control circuit is further configured to:

compare said test stroke to actuations of surgical instrument assemblies previously attached to said control interface; and

determine if the control interface is causing variation in actuations and if said surgical instrument assembly is causing variation in actuation.

6. A surgical instrument system, comprising:

a handle, comprising:

a frame;

a first drive system including a first drive motor;

a second drive system including a second drive motor;

a control system in communication with said first drive motor and said second drive motor; and

an attachment sensor in communication with said control system; and

a shaft attachable to said handle, wherein said shaft comprises:

a connector portion releasably mountable to said frame;

a first drive member comprising a first proximal connector that is coupled to said first drive system when said shaft is attached to said handle; and

a second drive member comprising a second proximal connector that is coupled to said second drive system when said shaft is attached to said handle, wherein said control system is configured to move said first drive member through a first test stroke when said shaft is attached to said handle to assess at least one of slop, backlash, friction loss, stroke variation, and motor stall in said first drive system and said first drive member, and wherein said control system is configured to move said second drive member through a second test stroke when said shaft is attached to said handle to assess at least one of slop, backlash, friction loss, stroke variation, and motor stall in said second drive system and said second drive member.

7. The surgical instrument system of claim 6 , wherein said control system is configured to alter a motor control algorithm for controlling said first drive motor based on said control system's assessment of said first drive system and said first drive member, and wherein said control system is configured to alter a motor control algorithm for controlling said second drive motor based on said control system's assessment of said second drive system and said second drive member.

8. A surgical instrument system, comprising:

a surgical instrument, comprising:

an actuation interface comprising an interface memory device;

a drive system comprising an electric motor;

a motor control program; and

a shaft releasably attachable to said actuation interface, wherein said shaft comprises:

a control circuit configured to access said interface memory device when said shaft is attached to said actuation interface to obtain data regarding said actuation interface;

a shaft memory device in communication with said control circuit; and

a communications circuit in communication with said control circuit; and

a surgical hub configured to communicate with said control circuit and a remote server, wherein said surgical hub is configured to receive data from said interface memory device and said shaft memory device and transmit said data to the remote server to determine changes to said motor control program that will improve the operation of said surgical instrument, and wherein said control circuit is configured to update said motor control program based on said changes.

9. The surgical instrument system of claim 8 , wherein said data includes an identification number of said actuation interface and an identification number of said shaft.

10. The surgical instrument system of claim 8 , wherein said data includes a manufacturing date of said actuation interface and a manufacturing date of said shaft.

11. The surgical instrument system of claim 8 , wherein said data includes a manufacturing site of said actuation interface and a manufacturing site of said shaft.

12. The surgical instrument system of claim 11 , wherein the remote server is configured to store the tolerance evaluation, stroke variation estimate, and motor control program changes.

13. The surgical instrument system of claim 12 , wherein the remote server is configured to transmit said motor control program changes to other actuation interface and shaft pairings that have the same data.

14. The surgical instrument system of claim 13 , wherein the remote server is configured to transmit said motor control program changes to other actuation interface and shaft pairings that have the same identification numbers.

15. The surgical instrument system of claim 14 , wherein said shaft identification number is stored on an RFID tag on said shaft and said actuation interface identification number is stored on an RFID tag on said actuation interface.

16. The surgical instrument system of claim 13 , wherein at least one of said actuation interface and said shaft comprises a lockout configured to limit the operation of said drive system, and wherein said control circuit is configured to actuate said lockout if said stroke variation estimate is outside of an acceptable range.

17. The surgical instrument system of claim 16 , further comprising a lockout override configured to delimit the operation of said drive system.

18. The surgical instrument system of claim 17 , wherein said control circuit is configured to monitor the actual stroke of said drive system, assess the actual stroke variation of said drive system, compare said actual stroke variation to said stroke variation estimate, and transmit said actual stroke variation to said surgical hub, wherein said surgical hub is configured to transmit said actual stroke variation to the remote server, and wherein the remote server is configured to revise said stroke variation estimate based on said actual stroke variation.

19. A surgical instrument system, comprising:

a housing assembly, comprising:

a frame;

a drive system including a drive motor;

a control circuit in communication with said drive motor; and

an attachment sensor in communication with said control circuit; and

a shaft attachable to said housing assembly, wherein said shaft comprises:

a connection interface releaseably mountable to said frame; and

a drive bar comprising a proximal connection that is coupled to said drive system when said shaft is attached to said housing assembly to form a connected drive between said drive bar and said drive system, wherein said control circuit is configured to move said drive bar through a test stroke when said shaft is attached to said housing assembly to assess at least one of slop, backlash, friction loss, stroke variation, and motor stall in said connected drive.

20. The surgical instrument system of claim 19 , wherein said drive bar comprises a tissue cutting knife.

21. The surgical instrument system of claim 20 , further comprising a staple cartridge seatable in a jaw of said shaft.

22. The surgical instrument system of claim 19 , wherein said control circuit is configured to alter a motor control algorithm that controls said drive motor based on said control circuit's assessment of said connected drive.

23. A surgical instrument system, comprising:

a surgical instrument, comprising:

an actuation interface, comprising:

an interface memory device;

a drive system comprising an electric motor; and

a motor control program; and

a shaft releaseably attachable to said actuation interface, wherein said shaft comprises:

a control circuit configured to access said interface memory device when said shaft is attached to said actuation interface to obtain data regarding said actuation interface;

a shaft memory device in communication with said control circuit; and

a communications circuit in communication with said control circuit; and

a surgical hub configured to communicate with said control circuit and a remote server, wherein said surgical hub is configured to receive data from said interface memory device and said shaft memory device and transmit said data to the remote server to determine changes to said motor control program that will improve the operation of said surgical instrument, and wherein said control circuit is configured to update said motor control program based on said changes.

24. A surgical instrument system, comprising:

a surgical instrument assembly configured to be attached to an actuation interface, wherein the actuation interface comprises an electric motor, and wherein said surgical instrument assembly comprises:

a shaft;

an end effector attached to said shaft; and

a memory device; and

a control circuit configured to run said actuation interface, wherein said control circuit is configured to:

receive calibration parameters based on said surgical instrument assembly from said memory device; and

update a motor control program to control the electric motor based on said received calibration parameters.

25. A surgical instrument system, comprising:

a surgical instrument assembly configured to be attached to an actuation interface, wherein the actuation interface comprises an electric motor, and wherein said surgical instrument assembly comprises:

a shaft;

an end effector attached to said shaft; and

a memory device; and

a control circuit configured to run said actuation interface, wherein said control circuit is configured to:

receive component identifiers from said memory device based on said surgical instrument assembly; and

determine a motor control program to control the electric motor based on said received component identifiers.

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 Jun 25, 2020
From: SHELTON, FREDERICK E., IV; HARRIS, JASON L.
To: ETHICON LLC
Reel/Frame 053042/0082 →
Continuity (2)
Provisional Application 62955306 · Dec 30, 2019
Related Publication 20210196265A1 · Jul 1, 2021
Cited By (11)
US 12,193,698 US 12,213,670 US 12,343,063 US 12,349,961 US 12,383,263 US 12,408,967 US 12,453,571 US 12,465,384 US 12,622,721 US 12,702,409 US 12,702,466