IP Library Granted Patent US 11,826,045
Granted Patent B2
US 11,826,045 · App. 17/558,837 · Granted Nov 28, 2023

Mechanisms for compensating for drivetrain failure in powered surgical instruments

Inventors: Frederick E. Shelton, IV (Hillsboro, OH); David C. Yates (Morrow, OH); Jason L Harris (Labanon, OH)
Assignee: Cilag GmbH International
A61B17/07207A61B17/072A61B2017/00017A61B2017/0046A61B2017/00075A61B2017/00119A61B2017/00398A61B2017/00473A61B2017/00725A61B2017/00734A61B2017/07257A61B2017/07271A61B2017/07278A61B2017/07285A61B2090/0809
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Quick Facts
Patent No.
US 11,826,045
App. No.
17/558,837
Filed
Dec 22, 2021
Granted
Nov 28, 2023
Kind
B2
Art Unit
3731
USPC
227/180.1
Abstract

A surgical apparatus includes an end effector configured to interact with a tissue during a plurality of zones of operation. The surgical apparatus further includes at least one drive mechanism operable to effect at least one motion in the end effector during each of the zones of operation. The surgical apparatus also includes one or more vibration sensors configured to record vibrations generated by the at least one drive mechanism during the zones of operation, wherein the one or more vibration sensors are configured to generate an output signal based on the sensed vibrations, and wherein the output signal is employed to determine a status of the surgical apparatus based on predetermined threshold values that are unique to each of the zones of operation.

Claims (54)

1. A surgical system, comprising:

a drive system comprising a motor and a drivetrain driveable by the motor;

a sensor configured to sense vibrations generated by the surgical system during operation thereof;

filters, wherein each filter defines a filter bandwidth;

a processor; and

a memory storing program instructions, which when executed by the processor, cause the processor to:

receive a signal from the sensor;

process the signal via the filters to generate a processed signal;

compare at least a portion of the processed signal to signal ranges, wherein each signal range is defined by a voltage amplitude threshold and a sub-bandwidth threshold, and wherein each sub-bandwidth threshold is bounded by a filter bandwidth of the filters; and

determine potential damage to a particular component of the surgical system based on the comparison.

2. The surgical system of claim 1 , wherein the portion of the processed signal comprises processed signals bound by the sub-bandwidth thresholds, and wherein the processed signal further comprises processed signals outside of the sub-bandwidth thresholds.

3. The surgical system of claim 2 , wherein the program instructions, which when executed by the processor, further cause the processor to determine the potential damage to the particular component of the surgical system further based on a comparison of the processed signals outside of the sub-bandwidth thresholds to a baseline voltage threshold.

4. The surgical system of claim 1 , wherein the portion of the processed signal comprises processed signals bound by the sub-bandwidth thresholds, and wherein the processed signal further comprises processed signals outside of the filter bandwidths.

5. The surgical system of claim 4 , wherein the program instructions, which when executed by the processor, further cause the processor to determine the potential damage to the particular component of the surgical system further based on a comparison of the processed signals outside of the filter bandwidths to a baseline voltage threshold.

6. The surgical system of claim 1 , wherein the program instructions, which when executed by the processor, further cause the processor to determine a severity of the potential damage to the particular component of the surgical system based on the comparison.

7. The surgical system of claim 6 , wherein the portion of the processed signal defines observed voltage amplitudes bound by the sub-bandwidth thresholds of the signal ranges, and wherein the program instructions, which when executed by the processor, further cause the processor to determine the severity of the potential damage based on a comparison of the observed voltage amplitudes to corresponding voltage amplitude thresholds of the signal ranges.

8. The surgical system of claim 1 , wherein the program instructions, which when executed by the processor, further cause the processor to issue an alert based on the comparison.

9. A surgical system, comprising:

a drive system comprising a motorized system and a drivetrain driveable by the motorized system;

a sensor configured to sense vibrations generated by the surgical system during operation thereof;

filters, wherein each filter defines a filter bandwidth;

a processor; and

a memory storing program instructions, which when executed by the processor, cause the processor to:

receive a signal from the sensor;

process the signal via the filters to generate a processed signal;

compare at least a portion of the processed signal to signal ranges, wherein each expected signal range is defined by a voltage amplitude threshold and a sub-bandwidth threshold, wherein each sub-bandwidth threshold is bounded by a filter bandwidth of the filters; and

determine a functional state of the surgical system based on the comparison.

10. The surgical system of claim 9 , wherein the portion of the processed signal comprises processed signals bound by the sub-bandwidth thresholds, and wherein the processed signal further comprises processed signals outside of the sub-bandwidth thresholds.

11. The surgical system of claim 10 , wherein the program instructions, which when executed by the processor, further cause the processor to determine the functional state of the surgical system further based on a comparison of the processed signals outside of the sub-bandwidth thresholds to a baseline voltage threshold.

12. The surgical system of claim 9 , wherein the portion of the processed signal comprises processed signals bound by the sub-bandwidth thresholds, and wherein the processed signal further comprises processed signals outside of the filter bandwidths.

13. The surgical system of claim 12 , wherein the program instructions, which when executed by the processor, further cause the processor to determine the functional state of the surgical system further based on a comparison of the processed signals outside of the filter bandwidths to a baseline voltage threshold.

14. The surgical system of claim 9 , wherein the program instructions, which when executed by the processor, further cause the processor to issue an alert based on the comparison.

15. A surgical system, comprising:

a drive system comprising a motor and a drivetrain driveable by the motor through a firing stroke;

a sensor configured to sense vibrations generated by the surgical system during operation thereof;

band-pass filters, wherein each band-pass filter defines a filter bandwidth;

a processor; and

a memory storing program instructions, which when executed by the processor, cause the processor to:

receive a signal from the sensor;

process the signal via the band-pass filters to generate a processed signal;

compare the processed signal to signal ranges and a baseline voltage threshold, wherein each signal range is defined by a voltage amplitude threshold and a sub-bandwidth threshold, and wherein each sub-bandwidth threshold is bounded by a filter bandwidth of the band-pass filters; and

determine potential damage of a particular component of the surgical system based on the comparison.

16. The surgical system of claim 15 , wherein the program instructions, which when executed by the processor, cause the processor to:

monitor a velocity of the drivetrain;

detect a decrease of the velocity of the drivetrain;

detect an increase of the velocity of the drivetrain after the decrease of the velocity of the drivetrain; and

receive the signal from the sensor between the detected decrease of the velocity and the detected increase of the velocity.

17. The surgical system of claim 15 , wherein the firing stroke comprises a first stroke portion, a second stroke portion subsequent to the first stroke portion, and a third stroke portion subsequent to the second stroke portion, and wherein the program instructions, which when executed by the processor, cause the processor to:

detect a start of the second stroke portion;

detect an end of the second stroke portion; and

receive the signal from the sensor between the start of the second stroke portion and the end of the second stroke portion.

18. The surgical system of claim 17 , wherein the second stroke portion comprises a predetermined section of the firing stroke.

19. The surgical system of claim 15 , wherein the sensor comprises a microphone.

20. The surgical system of claim 15 , wherein the sensor comprises an accelerometer.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2022
From: SHELTON, FREDERICK E., IV; YATES, DAVID C.; HARRIS, JASON L.
To: ETHICON ENDO-SURGERY, LLC
Reel/Frame 059284/0783 →
CHANGE OF NAME Recorded Mar 16, 2022
From: ETHICON ENDO-SURGERY, LLC
To: ETHICON LLC
Reel/Frame 059284/0901 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2022
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 059370/0393 →
Continuity (2)
Continuation 15043275 · Feb 12, 2016
Related Publication 20220183685A1 · Jun 16, 2022