IP Library Granted Patent US 11,026,751
Granted Patent B2
US 11,026,751 · App. 15/940,686 · Granted Jun 8, 2021

Display of alignment of staple cartridge to prior linear staple line

Inventors: Frederick E. Shelton, IV (Hillsboro, OH); Tamara Widenhouse (Clarksville, OH); Jason L. Harris (Lebanon, OH); David C. Yates (West Chester, OH)
Assignee: Cilag GmbH International
A61B34/20A61B5/065A61B17/00234A61B17/0206A61B17/0469A61B17/068A61B17/072A61B17/07207A61B17/115A61B17/1155A61B17/1285A61B17/29A61B17/295A61B17/320068A61B18/00A61B18/082A61B18/1206A61B18/14A61B18/1445A61B34/30A61B34/35A61B34/37A61B34/76A61B90/36A61B90/37G01S17/04G06F3/0484G06F3/04886G16H20/40G16H30/20G16H30/40G16H40/63H01R13/453H01R13/5219H01R13/5224H03K17/945H03K17/962H03K17/9622A61B1/00009A61B8/0841A61B17/0467A61B17/12013A61B17/32056A61B17/320092A61B90/98A61B2017/003A61B2017/0003A61B2017/00017A61B2017/00022A61B2017/00039A61B2017/0046A61B2017/00061A61B2017/00075A61B2017/00084A61B2017/00115A61B2017/00123A61B2017/00154A61B2017/00176A61B2017/00199A61B2017/00203A61B2017/00216A61B2017/00221A61B2017/00358A61B2017/00398A61B2017/00464A61B2017/00473A61B2017/00477A61B2017/00482A61B2017/00734A61B2017/00809A61B2017/00876A61B2017/00973A61B2017/07271A61B2017/07285A61B2017/2901A61B2017/2904A61B2017/2916A61B2017/2923A61B2017/2927A61B2017/2929A61B2017/2932A61B2017/2943A61B2018/0091A61B2018/0094A61B2018/00178A61B2018/00303A61B2018/00678A61B2018/00702A61B2018/00797A61B2018/00875A61B2018/00988A61B2018/00994A61B2018/126A61B2018/1253A61B2034/2048A61B2034/2051A61B2034/2059A61B2034/301A61B2034/305A61B2090/064A61B2090/065A61B2090/0803A61B2090/0807A61B2090/0808A61B2090/0809A61B2090/0811A61B2090/309A61B2090/365A61B2090/3612A61B2090/373A61B2090/502A61B2562/0257A61B2562/08H01H9/0271H01H2300/014H03K3/033H03K2017/9706H03K2217/94068
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Quick Facts
Patent No.
US 11,026,751
App. No.
15/940,686
Granted
Jun 8, 2021
Kind
B2
Abstract

A surgical hub is disclosed. The surgical hub includes a processor and a memory coupled to the processor. The memory stores instructions executable by the processor to receive image data from an image sensor, generate a first image based on the image data, display the first image on a surgical hub display coupled to the processor, receive a signal from a non-contact sensor, the signal indicative of a position of a surgical device, generate a second image based on the signal indicative of the position of the surgical device, and display the second image on the surgical hub display coupled to the processor.

Claims (46)

1. A surgical hub, comprising:

a processor; and

a memory coupled to the processor, the memory storing instructions executable by the processor to:

receive image data from an image sensor;

generate a first image based on the image data, wherein the first image comprises a target on a first side of a tissue;

display the first image on a surgical hub display coupled to the processor;

receive a signal from a non-contact sensor, the signal indicative of a position of a surgical device on a second side of the tissue, wherein the second side is opposite of the first side;

generate a second image based on the signal indicative of the position of the surgical device on the second side of the tissue; and

display a position of the second image relative to the first image on the surgical hub display coupled to the processor.

2. The surgical hub of claim 1 , wherein the image data represents a center of a staple line.

3. The surgical hub of claim 2 , wherein the target corresponds to the center of the staple line.

4. The surgical hub of claim 2 , wherein the signal is indicative of the position of the surgical device relative to the center of the staple line.

5. The surgical hub of claim 2 , wherein the second image represents the position of the surgical device along a projected path of the surgical device toward the center of the staple line.

6. The surgical hub of claim 2 , wherein the staple line is a double staple line defining a staple overlap portion.

7. The surgical hub of claim 6 , wherein the surgical device is a circular stapler comprising an anvil trocar and the non-contact sensor is configured to detect a location of the anvil trocar relative to the staple overlap portion.

8. The surgical hub of claim 2 , wherein the staple line is a linear staple line formed using a linear transection technique.

9. The surgical hub of claim 8 , wherein a center of the linear staple line is located halfway between one end of the linear staple line and an opposite end of the linear staple line.

10. The surgical hub of claim 1 , wherein the image sensor is coupled to a medical imaging device.

11. The surgical hub of claim 1 , wherein the image sensor and the surgical device are separate devices.

12. The surgical hub of claim 1 , wherein the non-contact sensor is an inductive sensor.

13. The surgical hub of claim 1 , wherein the non-contact sensor is a capacitive sensor.

14. A method of aligning a surgical instrument coupled to a surgical hub, the method comprising:

receiving image data by a processor from an image sensor;

generating a first image by the processor based on the image data, wherein the first image comprises a target on a first side of a tissue;

displaying the first image on a surgical hub display coupled to the processor;

receiving a signal by the processor from a non-contact sensor, the signal indicative of a position of a surgical device on a second side of the tissue, wherein the second side is opposite of the first side;

generating a second image by the processor based on the signal indicative of the position of the surgical device on the second side of the tissue; and

displaying a position of the second image relative to the first image on the surgical hub display coupled to the processor.

15. The method of claim 14 , comprising displaying, on the surgical hub display coupled to the processor, an indication when the second image is not aligned with the first image.

16. The method of claim 14 , comprising displaying, on the surgical hub display coupled to the processor, an indication when the second image is aligned with the first image.

17. The method of claim 14 , comprising displaying, on the surgical hub display coupled to the processor, a projected path of the surgical device as the second image moves towards the first image.

18. The method of claim 17 , comprising displaying, on the surgical hub display coupled to the processor, the position of the surgical device along the projected path of the surgical device toward a center of a staple line.

19. A surgical hub for aligning a surgical instrument, the surgical hub comprising:

a processor; and

a memory coupled to the processor, the memory storing instructions executable by the processor to:

receive image data from an image sensor, wherein the image data represents a center of a staple line;

generate a first image based on the image data;

display the first image on a monitor coupled to the processor, wherein the first image represents a target on a first side of a tissue corresponding to the center of the staple line;

receive a signal from a non-contact sensor, the signal indicative of a position of a surgical device on a second side of the tissue relative to the center of the staple line, wherein the second side is opposite of the first side;

generate a second image based on the position of the surgical device; and

display a position of the second image relative to the first image on the monitor, wherein the second image represents the position of the surgical device along a projected path of the surgical device toward the center of the staple line.

20. The surgical hub of claim 19 , wherein the center of the staple line is a double-staple overlap portion zone.

21. The surgical hub of claim 19 , wherein the image sensor receives an image from a medical imaging device.

22. The surgical hub of claim 19 , wherein the surgical device is a circular stapler comprising an anvil trocar and the non-contact sensor is configured to detect a location of the anvil trocar relative to the center of the staple line.

23. The surgical hub of claim 19 , wherein the non-contact sensor is an inductive sensor.

24. The surgical hub of claim 19 , wherein the non-contact sensor is a capacitive sensor.

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 24, 2018
From: SHELTON, FREDERICK E., IV; WIDENHOUSE, TAMARA; HARRIS, JASON L.; YATES, DAVID C.
To: ETHICON LLC
Reel/Frame 045895/0852 →
Continuity (5)
Provisional Application 62649309 · Mar 28, 2018
Provisional Application 62611341 · Dec 28, 2017
Provisional Application 62611340 · Dec 28, 2018
Provisional Application 62611339 · Dec 28, 2018
Related Publication 20190201105A1 · Jul 4, 2019
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