IP Library Granted Patent US 10,426,471
Granted Patent B2
US 10,426,471 · App. 15/385,922 · Granted Oct 1, 2019

Surgical instrument with multiple failure response modes

Inventors: Frederick E. Shelton, IV (Hillsboro, OH); David C. Yates (West Chester, OH); Jason L. Harris (Lebanon, OH); Mark D. Overmyer (Cincinnati, OH); Kharyl Evenson George Stephens (Cincinnati, OH)
Assignee: Ethicon LLC
A61B17/07207A61B17/072A61B17/068A61B17/320016A61B34/25A61B34/30A61B2017/00017A61B2017/00039A61B2017/0046A61B2017/00119A61B2017/00398A61B2017/00464A61B2017/00477A61B2017/00734A61B2017/00876A61B2017/07257A61B2017/07271A61B2017/07278A61B2017/07285A61B2017/2927A61B2017/2933A61B2034/302A61B2090/0808A61B2090/0814
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Quick Facts
Patent No.
US 10,426,471
App. No.
15/385,922
Granted
Oct 1, 2019
Kind
B2
Abstract

A surgical instrument includes a failure response system with a first circuit configured to detect a first operational error of the powered surgical stapling and cutting instrument, and a control circuit configured to activate a first failure response mode if the first operational error is detected.

Claims (75)

1. A powered surgical stapling and cutting instrument, comprising:

a staple cartridge, comprising:

a housing;

a plurality of staple cavities;

a plurality of staples deployable from said staple cavities during a firing stroke;

a firing member movable during said firing stroke to deploy said staples from said staple cavities; and

a motor operably coupled to said firing member, wherein said motor is configured to generate at least one rotational motion to motivate said firing member to cause said staples to be deployed from said staple cavities during said firing stroke; and

a failure response system, comprising:

a first circuit configured to detect a first operational error of said powered surgical stapling and cutting instrument if said movement of said firing member and said rotational motion of said motor are beyond a predetermined correlation during said firing stroke;

a second circuit configured to detect a second operational error of said powered surgical stapling and cutting instrument if a failure is detected in at least one of a beginning-of-stroke switch and an end-of-stroke switch; and

a control circuit configured to activate a first failure response mode if said first operational error is detected, wherein said control circuit is configured to activate a second failure response mode which is different than said first failure response mode if said second operational error is detected in addition to said detection of said first operational error.

2. The powered surgical stapling and cutting instrument of claim 1 , wherein said first failure response mode is a warning mode.

3. The powered surgical stapling and cutting instrument of claim 1 , wherein said second failure response mode is a limp mode.

4. The powered surgical stapling and cutting instrument of claim 3 , wherein said motor is run at a reduced speed in said limp mode.

5. The powered surgical stapling and cutting instrument of claim 3 , wherein said firing member is moved at a reduced speed in said limp mode.

6. The powered surgical stapling and cutting instrument of claim 1 , further comprising a third circuit configured to detect a third operational error of said powered surgical stapling and cutting instrument if a current drawn by said motor during said firing stroke is beyond a predetermined range.

7. The powered surgical stapling and cutting instrument of claim 6 , wherein said control circuit is configured to activate a third failure response mode which is different than said first failure response mode and said second failure response mode if said third operational error is detected in addition to said detection of said first operational error and said second operational error.

8. The powered surgical stapling and cutting instrument of claim 7 , wherein said third failure response mode is more restrictive than said second failure response mode.

9. A powered surgical stapling and cutting instrument, comprising:

a staple cartridge, comprising:

a housing;

a plurality of staple cavities;

a plurality of staples deployable from said staple cavities during a firing stroke;

a firing member movable during said firing stroke to cause said staples to be deployed from said staple cavities; and

a motor operably coupled to said firing member, wherein said motor is configured to generate at least one rotational motion to motivate said firing member to cause said staples to be deployed from said staple cavities during said firing stroke; and

a failure response system, comprising:

a first circuit configured to detect a first operational error of said powered surgical stapling and cutting instrument if said movement of said firing member and said rotational motion of said motor are beyond a predetermined correlation during said firing stroke;

a second circuit configured to detect a second operational error of said powered surgical stapling and cutting instrument if a failure is detected in at least one of a beginning-of-stroke switch and an end-of-stroke switch; and

a controller, comprising:

a memory;

a processor; and

a storage medium comprising program instructions which, when executed by said processor, cause said processor to:

activate a first failure response mode if said first operational error is detected; and

activate a second failure response mode which is different than said first failure response mode if said second operational error is detected in addition to said detection of said first operational error.

10. The powered surgical stapling and cutting instrument of claim 9 , wherein said first failure response mode is a warning mode.

11. The powered surgical stapling and cutting instrument of claim 9 , wherein said second failure response mode is a limp mode.

12. The powered surgical stapling and cutting instrument of claim 11 , wherein said motor is run at a reduced speed in said limp mode.

13. The powered surgical stapling and cutting instrument of claim 11 , wherein said firing member is moved at a reduced speed in said limp mode.

14. The powered surgical stapling and cutting instrument of claim 9 , a third circuit configured to detect a third operational error of said powered surgical stapling and cutting instrument if a current drawn by the motor during said firing stroke is beyond a predetermined range.

15. The powered surgical stapling and cutting instrument of claim 14 , wherein said storage medium comprises program instructions which, when executed by said processor, cause said processor to activate a third failure response mode which is different than said first failure response mode and said second failure response mode if said third operational error is detected in addition to said detection of said first operational error and said second operational error.

16. The powered surgical stapling and cutting instrument of claim 15 , wherein said third failure response mode is more restrictive than said second failure response mode.

17. A failure response system for use with a powered surgical stapling and cutting instrument configured to deploy a plurality of staples into tissue during a firing stroke, wherein said failure response system comprises:

a first circuit configured to detect a first operational error of said powered surgical stapling and cutting instrument during said firing stroke;

a second circuit configured to detect a second operational error of said powered surgical stapling and cutting instrument during said firing stroke, wherein said second operational error is different than said first operational error;

a third circuit configured to detect a third operational error of said powered surgical stapling and cutting instrument during said firing stroke, wherein said third operational error is different than said first operational error and said second operational error; and

a control circuit configured to activate a first failure response mode if said first operational error is detected, wherein said control circuit is configured to activate a second failure response mode which is different than said first failure response mode if said second operational error is detected in addition to said detection of said first operational error, wherein said control circuit is configured to activate a third failure response mode which is different than said first failure response mode and said second failure response mode if said third operational error is detected in addition to said detection of said first operational error and said second operational error.

18. The failure response system of claim 17 , wherein said first failure response mode is a warning mode.

19. The failure response system of claim 18 , wherein said second failure response mode is a limp mode.

20. The failure response system of claim 17 , wherein said third failure response mode is more restrictive than said second failure response mode.

21. A powered surgical instrument, comprising:

an end effector;

a firing member movable through an actuation stroke to actuate said end effector; and

a motor operably coupled to said firing member, wherein said motor is configured to generate at least one rotational motion to actuate said firing member through said actuation stroke; and

a failure response system, comprising:

a first circuit configured to detect a first operational error of said powered surgical instrument, wherein said first operational error corresponds to said actuation of said firing member and said rotational motion of said motor exceeding a predetermined correlation during said actuation stroke;

a second circuit configured to detect a second operational error of said powered surgical instrument, wherein said second operational error corresponds to a failure detected in at least one of a beginning-of-stroke switch and an end-of-stroke switch; and

a control circuit configured to activate a first failure response mode in response to the detection of said first operational error, wherein said control circuit is configured to activate a second failure response mode in response to the detection of said second operational error and said first operational error, and wherein said first failure response mode is different than said second failure response mode.

22. A powered surgical instrument, comprising:

an end effector, comprising:

an actuation member movable through a firing stroke to actuate said end effector; and

a motor operably coupled to said actuation member, wherein said motor is configured to generate at least one rotational motion to move said actuation member through said firing stroke; and

a failure response system, comprising:

a first circuit configured to detect a first operational error of said powered surgical instrument, wherein said first operational error comprises detecting said movement of said firing member and said rotational motion of said motor exceeding a predetermined correlation during said firing stroke;

a second circuit configured to detect a second operational error of said powered surgical instrument, wherein said second operational error comprises detecting failure of at least one of a beginning-of-stroke switch and an end-of-stroke switch; and

a controller, comprising:

a memory;

a processor; and

a storage medium comprising program instructions which, when executed by said processor, cause said processor to:

activate a first failure response mode in response to the detection of said first operational error;

activate a second failure response mode in response to the detection of the first operational error and the second operational error, wherein said first failure response mode and said second failure response mode are different.

23. A failure response system for use with a powered surgical instrument comprising an end effector and a firing member, wherein the firing member is configured to be actuated through a firing stroke to perform an end effector function, and wherein said failure response system comprises:

a first circuit configured to detect a first operational error of the powered surgical instrument during the firing stroke;

a second circuit configured to detect a second operational error of the powered surgical instrument during the firing stroke, wherein said second operational error is different than said first operational error;

a third circuit configured to detect a third operational error of the powered surgical instrument during the firing stroke, wherein said third operational error is different than said first operational error and said second operational error; and

a control circuit configured to activate a first failure response mode in response to the detection of said first operational error, wherein said control circuit is configured to activate a second failure response mode in response to the detection of said second operational error and said first operational error, wherein said first failure response mode is different than said second failure response mode, wherein said control circuit is configured to activate a third failure response mode in response to the detection of said third operational error, said first operational error, and said second operational error, and wherein said third failure response mode is different than said first failure response mode and said second failure response mode.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2021
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 056983/0569 →
CHANGE OF NAME Recorded Dec 14, 2017
From: ETHICON ENDO-SURGERY, LLC
To: ETHICON LLC
Reel/Frame 045603/0712 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2017
From: SHELTON, FREDERICK E., IV; YATES, DAVID C.; HARRIS, JASON L.; OVERMYER, MARK D.; STEPHENS, KHARYL EVENSON GEORGE
To: ETHICON ENDO-SURGERY, LLC
Reel/Frame 042523/0852 →
Continuity (1)
Related Publication 20180168622A1 · Jun 21, 2018
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