IP Library Granted Patent US 11,406,386
Granted Patent B2
US 11,406,386 · App. 17/023,875 · Granted Aug 9, 2022

End effector including magnetic and impedance sensors

Inventors: Daniel L. Baber (West Chester, OH); Jeffrey S. Swayze (West Chester, OH); Andrew T. Beckman (Cincinnati, OH); Frederick E. Shelton, IV (Hillsboro, OH)
Assignee: Cilag GmbH International
A61B17/07207A61B5/6847A61B17/00A61B17/068A61B17/0644A61B17/072A61B17/07292A61B17/105A61B17/1155A61B17/32A61B90/06A61B90/70A61B90/92A61B90/98G01R33/072G06F1/266G06F1/28G06F1/30G06F1/305G06F1/3215G06F1/3287H02H1/06H02H3/06H02H3/087H02H3/18H02H3/202H02H3/207H02H3/243H02H7/20H02H11/002H02J1/10H02J7/0068A61B5/067A61B5/1076A61B5/6885A61B8/12A61B8/4483A61B90/90A61B90/94A61B90/96A61B2017/00017A61B2017/00022A61B2017/00026A61B2017/00039A61B2017/0046A61B2017/00061A61B2017/00066A61B2017/00075A61B2017/00106A61B2017/00115A61B2017/00119A61B2017/00123A61B2017/00199A61B2017/00393A61B2017/00398A61B2017/00477A61B2017/00725A61B2017/00734A61B2017/00876A61B2017/07214A61B2017/07257A61B2017/07271A61B2017/07285A61B2017/2927A61B2018/00648A61B2090/061A61B2090/064A61B2090/065A61B2090/081A61B2090/0803A61B2090/0806A61B2090/0807A61B2090/0808A61B2090/0811A61B2090/0814A61B2090/0818A61B2090/304A61B2090/309A61B2090/702A61B2505/05A61B2562/029A61B2562/0223A61B2562/0247A61B2562/0257A61B2562/0261A61B2562/043A61B2562/06A61B2562/223H02H3/02H02H3/04
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Quick Facts
Patent No.
US 11,406,386
App. No.
17/023,875
Filed
Sep 17, 2020
Granted
Aug 9, 2022
Kind
B2
Art Unit
2836
USPC
307/52
Abstract

An end effector for use with a surgical stapling instrument is disclosed. The end effector comprises a first jaw, a second jaw movable relative to the first jaw to grasp tissue therebetween, and a staple cartridge. The staple cartridge comprises staples deployable into the tissue. The end effector further comprises a magnetic sensor configured to measure a parameter indicative of an identifying characteristic of the staple cartridge, an impedance sensor configured to measure a parameter indicative of an impedance of the tissue, and a processing unit in communication with the impedance sensor. The processing unit is configured to determine a property of the tissue based on an output of the impedance sensor.

Claims (43)

1. An end effector for use with a surgical stapling instrument, the end effector comprising:

a first jaw;

a second jaw movable relative to the first jaw to grasp tissue therebetween;

a staple cartridge comprising staples deployable into the tissue;

a magnetic sensor configured to measure a parameter indicative of an identifying characteristic of the staple cartridge;

an impedance sensor configured to measure a parameter indicative of an impedance of the tissue; and

a processing unit in communication with the impedance sensor, wherein the processing unit is configured to determine a property of the tissue based on an output of the impedance sensor.

2. The end effector of claim 1 , wherein the impedance sensor is a first impedance sensor, and wherein the end effector further comprises a second impedance sensor spaced apart from the first impedance sensor.

3. The end effector of claim 2 , wherein the processing unit is configured to determine a thickness of the tissue based on a first output of the first impedance sensor and a second output of the second impedance sensor.

4. The end effector of claim 1 , wherein the magnetic sensor is a Hall Effect sensor.

5. The end effector of claim 1 , wherein the processing unit is configured to determine a type of the tissue based on the output of the impedance sensor.

6. A surgical instrument, comprising:

an end effector, comprising:

a first jaw;

a second jaw movable relative to the first jaw to grasp tissue therebetween;

a staple cartridge comprising staples deployable into the tissue;

an anvil comprising pockets, wherein the staples are deformable against the pockets of the anvil;

a magnetic sensor configured to measure a parameter indicative of an identifying characteristic of the staple cartridge;

an impedance sensor configured to measure a parameter indicative of an impedance of the tissue; and

a processing unit in communication with the impedance sensor, wherein the processing unit is configured to determine a property of the tissue based on an output of the impedance sensor;

an articulation joint extending proximally from the end effector;

a shaft extending proximally from the articulation joint, wherein the articulation joint is configured to facilitate articulation of the end effector relative to the shaft; and

a flex cable connected to the processing unit, the flex cable extending proximally from the end effector into the shaft, wherein the flex cable is configured to transmit power to the processing unit without interfering with the articulation of the end effector relative to the shaft.

7. The surgical instrument of claim 6 , wherein the impedance sensor is a first impedance sensor, and wherein the end effector further comprises a second impedance sensor spaced apart from the first impedance sensor.

8. The surgical instrument of claim 7 , wherein the processing unit is configured to determine a thickness of the tissue based on a first output of the first impedance sensor and a second output of the second impedance sensor.

9. The surgical instrument of claim 6 , wherein the magnetic sensor is a Hall Effect sensor.

10. The surgical instrument of claim 6 , wherein the processing unit is configured to determine a type of the tissue based on the output of the impedance sensor.

11. A surgical instrument, comprising:

an end effector, comprising:

a first jaw;

a second jaw movable relative to the first jaw to grasp tissue therebetween;

a staple cartridge comprising staples deployable into the tissue;

an anvil comprising pockets, wherein the staples are deformable against the pockets of the anvil;

a magnet;

a Hall Effect sensor configured to measure a parameter of a magnetic field emitted by the magnet, wherein the parameter is indicative of an identifying characteristic of the staple cartridge;

an impedance sensor configured to measure a parameter indicative of an impedance of the tissue; and

a processing unit in communication with the impedance sensor, wherein the processing unit is configured to determine a property of the tissue based on an output of the impedance sensor;

an articulation joint extending proximally from the end effector;

a shaft extending proximally from the articulation joint, wherein the articulation joint is configured to facilitate articulation of the end effector relative to the shaft; and

a flex cable connected to the processing unit, the flex cable extending proximally from the end effector into the shaft.

12. The surgical instrument of claim 11 , wherein the impedance sensor is a first impedance sensor, and wherein the end effector further comprises a second impedance sensor spaced apart from the first impedance sensor.

13. The surgical instrument of claim 12 , wherein the processing unit is configured to determine a thickness of the tissue based on a first output of the first impedance sensor and a second output of the second impedance sensor.

14. The surgical instrument of claim 12 , wherein the processing unit is configured to determine a type of the tissue based on the output of the impedance sensor.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2021
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 056601/0339 →
CHANGE OF NAME Recorded Apr 6, 2021
From: ETHICON ENDO-SURGERY, LLC
To: ETHICON LLC
Reel/Frame 055841/0386 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2021
From: BABER, DANIEL L.; SWAYZE, JEFFREY S.; BECKMAN, ANDREW T.; SHELTON, FREDERICK E., IV
To: ETHICON ENDO-SURGERY, INC.
Reel/Frame 055845/0440 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2021
From: ETHICON ENDO-SURGERY, INC.
To: ETHICON ENDO-SURGERY, LLC
Reel/Frame 055845/0577 →
Continuity (3)
Continuation 16170576 · Oct 25, 2018
Continuation 14479098 · Sep 5, 2014
Related Publication 20210068831A1 · Mar 11, 2021
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