IP Library Granted Patent US 11,931,110
Granted Patent B2
US 11,931,110 · App. 16/220,318 · Granted Mar 19, 2024

Surgical instrument comprising a control system that uses input from a strain gage circuit

Inventors: Frederick E. Shelton, IV (Hillsboro, OH); Michael J. Vendely (Lebanon, OH); Jason L. Harris (Lebanon, OH); Gregory J. Bakos (Mason, OH); David C. Yates (Morrow, OH)
Assignee: Cilag GmbH International
A61B34/20A61B1/000094A61B5/065A61B17/00234A61B17/0206A61B17/0469A61B17/072A61B17/07207A61B17/115A61B17/1155A61B17/1285A61B17/29A61B17/295A61B17/320068A61B18/00A61B18/14A61B18/1445A61B34/30A61B34/35A61B34/37A61B34/76A61B90/36A61B90/37G01S17/04G06F3/0484G06F3/04886G16H20/40G16H30/20G16H30/40G16H40/63H01R13/453H01R13/5219H01R13/5224H03K17/962H03K17/9622A61B8/0841A61B2017/00017A61B2017/00022A61B2017/0003A61B2017/00039A61B2017/00061A61B2017/00075A61B2017/00084A61B2017/00115A61B2017/00123A61B2017/00154A61B2017/00176A61B2017/00199A61B2017/00203A61B2017/00216A61B2017/00221A61B2017/003A61B2017/00398A61B2017/0046A61B2017/00464A61B2017/00473A61B2017/00477A61B2017/00482A61B2017/00734A61B2017/00809A61B2017/00876A61B2017/00973A61B17/0467A61B17/068A61B2017/07271A61B2017/07285A61B17/12013A61B2017/2901A61B2017/2916A61B2017/2923A61B2017/2927A61B2017/2929A61B2017/2932A61B2017/2943A61B17/320092A61B2018/00053A61B2018/00178A61B2018/00303A61B2018/00678A61B2018/00702A61B2018/00797A61B2018/00875A61B2018/0091A61B2018/00922A61B2018/0094A61B2018/00988A61B2018/00994A61B2018/1253A61B2034/2048A61B2034/2051A61B2034/2059A61B2034/301A61B2034/305A61B2090/064A61B2090/065A61B2090/0803A61B2090/0807A61B2090/0808A61B2090/0809A61B2090/0811A61B2090/309A61B2090/3612A61B2090/365A61B2090/373A61B2090/502A61B90/98A61B2562/0257H01H9/0271H01H2300/014H03K2017/9706H03K2217/94068
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Quick Facts
Patent No.
US 11,931,110
App. No.
16/220,318
Filed
Dec 14, 2018
Granted
Mar 19, 2024
Kind
B2
Art Unit
3771
USPC
606/167
Abstract

A surgical instrument is disclosed comprising a control system and a strain gage circuit. The operation of the control system is modifiable by an input from the strain gage circuit.

Claims (47)

1. A surgical instrument system, comprising:

a first surgical instrument, comprising:

a handle;

a first shaft extending from said handle;

a first end effector extending from said first shaft; and

a drive system, comprising:

a first electric motor;

a drive shaft operably coupled to said first electric motor;

a first motor control system in communication with said first electric motor; and

a strain gage circuit embedded in said drive shaft, wherein said strain gage circuit is in signal communication with said first motor control system, and wherein said first motor control system is configured to control the operation of said first electric motor to perform an end effector function of said first end effector based on a signal from said strain gage circuit; and

a second surgical instrument, comprising:

a second shaft;

a second end effector;

a second electric motor; and

a second motor control system, wherein said second motor control system is configured to control the operation of said second electric motor to perform an end effector function of said second end effector based on a signal from said strain gage circuit.

2. The surgical instrument system of claim 1 , wherein said strain gage circuit is configured to measure a strain in said drive shaft, and wherein said second motor control system comprises a processor and an algorithm configured to stop said second electric motor when the measured strain exceeds a predetermined threshold.

3. The surgical instrument system of claim 2 , wherein said drive system further comprises an actuator and an actuation sensor, wherein said actuation sensor is in communication with said first motor control system, wherein said actuator is movable between an unactuated position and an actuated position, and wherein an actuation of said actuator re-starts said first electric motor after being stopped by said first motor control system.

4. The surgical instrument system of claim 1 , wherein said strain gage circuit is configured to measure a strain in said drive shaft, and wherein said first motor control system comprises a processor and an algorithm configured to slow said first electric motor when said measured strain exceeds a predetermined threshold.

5. The surgical instrument system of claim 4 , wherein said drive system further comprises an actuator and an actuation sensor, wherein said actuation sensor is in communication with said first motor control system, wherein said actuator is movable between an unactuated position and an actuated position, and wherein an actuation of said actuator speeds up said first electric motor after being slowed by said first motor control system.

6. The surgical instrument system of claim 1 , further comprising means for regulating a temperature of said strain gage circuit.

7. The surgical instrument system of claim 6 , wherein said means is configured to minimize temperature variations in said strain gage circuit relative to a predetermined temperature.

8. The surgical instrument system of claim 7 , wherein said predetermined temperature is independent of an ambient temperature surrounding said first surgical instrument.

9. The surgical instrument system of claim 6 , wherein said means is configured to hold the temperature of said strain gage circuit at a constant temperature.

10. The surgical instrument system of claim 9 , wherein said constant temperature is different than an ambient temperature surrounding said first surgical instrument.

11. The surgical instrument system of claim 1 , further comprising:

a transmitter in signal communication with said first motor control system, wherein said transmitter is configured to emit a wireless signal to the surgical instrument system; and

a receiver in signal communication with said first motor control system, wherein said receiver is configured to receive a wireless signal from the surgical instrument system.

12. The surgical instrument system of claim 1 , further comprising an articulation joint rotatably connecting said first end effector to said first shaft, wherein said end effector function of said first end effector comprises rotating said first end effector about said articulation joint, and wherein said first motor control system is configured to stop articulation of said first end effector when a strain in said drive shaft exceeds a threshold level.

13. The surgical instrument system of claim 1 , further comprising an articulation joint rotatably connecting said first end effector to said first shaft, wherein said end effector function of said first end effector comprises rotating said first end effector about said articulation joint, and wherein said first motor control system is configured to stop articulation of said first end effector when a strain measured by said strain gage circuit in said drive shaft exceeds a threshold level.

14. The surgical instrument system of claim 1 , further comprising an articulation joint rotatably connecting said first end effector to said first shaft, wherein said end effector function of said first end effector comprises rotating said first end effector about said articulation joint, and wherein said first motor control system is configured to slow articulation of said first end effector when a strain measured by said strain gage circuit in said drive shaft exceeds a threshold level.

15. The surgical instrument system of claim 1 , wherein said first end effector comprises a rotatable jaw, wherein said end effector function of said first end effector comprises rotating said jaw, and wherein said first motor control system is configured to stop the rotation of said jaw when a strain measured by said strain gage circuit in said drive shaft exceeds a threshold level.

16. The surgical instrument system of claim 1 , wherein said first end effector comprises a rotatable jaw, wherein said end effector function of said first end effector comprises rotating said jaw, and wherein said first motor control system is configured to slow the rotation of said jaw when a strain measured by said strain gage circuit in said drive shaft exceeds a threshold level.

17. The surgical instrument system of claim 1 , wherein said first end effector comprises a tissue cutting member, wherein said end effector function of said first end effector comprises translating said tissue cutting member through a cutting stroke, and wherein said first motor control system is configured to stop the translation of said tissue cutting member when a strain measured by said strain gage circuit in said drive shaft exceeds a threshold level.

18. The surgical instrument system of claim 1 , wherein said first end effector comprises a tissue cutting member, wherein said end effector function of said first end effector comprises translating said tissue cutting member through a cutting stroke, and wherein said first motor control system is configured to slow the translation of said tissue cutting member when a strain measured by said strain gage circuit in said drive shaft exceeds a threshold level.

19. The surgical instrument system of claim 1 , wherein said first end effector comprises a staple cartridge including staples removably stored therein.

20. A surgical system, comprising:

a first instrument, comprising:

a first shaft;

a first end effector; and

a strain gage circuit and a transmitter in communication with said strain gage circuit; and

a second instrument, comprising:

a second shaft;

a second end effector;

an electric motor;

a drive shaft operably coupled to said electric motor; and

a motor control system in communication with said electric motor and said transmitter, wherein said motor control system is configured to control the operation of said electric motor based on a signal from said strain gage circuit.

21. The surgical system of claim 20 , further comprising a surgical data hub, wherein said motor control system is in communication with said transmitter via said surgical data hub.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2021
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 056983/0569 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2019
From: SHELTON, FREDERICK E., IV; VENDELY, MICHAEL J.; HARRIS, JASON L.; BAKOS, GREGORY J.; YATES, DAVID C.
To: ETHICON LLC
Reel/Frame 048794/0973 →
Continuity (29)
Provisional Application 62778572 · Dec 12, 2018
Provisional Application 62750529 · Oct 25, 2018
Provisional Application 62750539 · Oct 25, 2018
Provisional Application 62750555 · Oct 25, 2018
Provisional Application 62659900 · Apr 19, 2018
Provisional Application 62665128 · May 1, 2018
Provisional Application 62665129 · May 1, 2018
Provisional Application 62665134 · May 1, 2018
Provisional Application 62665139 · May 1, 2018
Provisional Application 62665177 · May 1, 2018
Provisional Application 62665192 · May 1, 2018
Provisional Application 62649291 · Mar 28, 2018
Provisional Application 62649294 · Mar 28, 2018
Provisional Application 62649296 · Mar 28, 2018
Provisional Application 62649300 · Mar 28, 2018
Provisional Application 62649302 · Mar 28, 2018
Provisional Application 62649307 · Mar 28, 2018
Provisional Application 62649309 · Mar 28, 2018
Provisional Application 62649310 · Mar 28, 2018
Provisional Application 62649313 · Mar 28, 2018
Provisional Application 62649315 · Mar 28, 2018
Provisional Application 62649320 · Mar 28, 2018
Provisional Application 62649323 · Mar 28, 2018
Provisional Application 62649327 · Mar 28, 2018
Provisional Application 62649333 · Mar 28, 2018
Provisional Application 62611339 · Dec 28, 2017
Provisional Application 62611340 · Dec 28, 2017
Provisional Application 62611341 · Dec 28, 2017
Related Publication 20190201029A1 · Jul 4, 2019
Cited By (1)
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