IP Library Granted Patent US 11,583,306
Granted Patent B2
US 11,583,306 · App. 16/841,322 · Granted Feb 21, 2023

Surgical instruments with articulating shafts

Inventors: William A. Olson (Lebanon, OH); Jeffrey D. Messerly (Cincinnati, OH); Daniel W. Price (Loveland, OH); Kevin L. Houser (Springboro, OH); Craig N. Faller (Batavia, OH); William D. Dannaher (Cincinnati, OH); Sora Rhee (Spring Mills, PA); Tylor C. Muhlenkamp (Cincinnati, OH)
Assignee: Cilag GmbH International
A61B17/295A61B17/22004A61B17/320068A61B17/320092A61B17/2202A61B2017/003A61B2017/00327A61B2017/00331A61B2017/00336A61B2017/22014A61B2017/22015A61B2017/2927A61B2017/320071A61B2017/320072A61B2017/320075A61B2017/320089A61B2017/320093A61B2017/320094
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Quick Facts
Patent No.
US 11,583,306
App. No.
16/841,322
Granted
Feb 21, 2023
Kind
B2
Abstract

The present disclosure is directed to end effectors. An end effector includes an outer shaft extending along a longitudinal axis and an inner shaft partially located within the outer shaft. The end effector may include an ultrasonic blade. The inner shaft may include biased and unbiased portions. The inner shaft and outer shaft may be translatable relative to one another. At one translatable position, the biased portion of the inner shaft may be located within the outer shaft and the unbiased portion may be substantially straight along the longitudinal axis. At another translatable position, the biased portion of the inner shaft may be located outside of and distally positioned from the outer shaft such that the biased portion of the inner shaft is bent away from the longitudinal axis.

Claims (28)

1. An articulatable surgical instrument comprising:

a shaft extending along a longitudinal axis; and

an end effector configured to treat tissue, the end effector comprising a curved ultrasonic blade positioned within the shaft and translatable relative to the shaft along the longitudinal axis;

wherein the curved ultrasonic blade comprises a proximal portion that is curved in a first direction away from the longitudinal axis, an intermediate portion that is curved in a second direction away from the longitudinal axis and opposite the first direction, and a distal portion that extends from the intermediate portion in the first direction, the ultrasonic blade manufactured such that the curvature of the proximal portion and the curvature of the intermediate portion are balanced to both have a vibrational mode purely in the direction of the longitudinal axis.

2. The articulatable surgical instrument of claim 1 , wherein the curvature of the proximal portion and the curvature of the intermediate portion both comprise a node and/or anti-node that occurs at a point of tangency when the ultrasonic blade is driven at a resonant frequency.

3. The articulatable surgical instrument of claim 1 , wherein the distal portion of the ultrasonic blade extends beyond the shaft in a lateral direction relative to the longitudinal axis, when in a first configuration when the ultrasonic blade protracts distally.

4. The articulatable surgical instrument of claim 3 , wherein the distal portion of the ultrasonic blade is configured to fully retract within the shaft when in a second configuration when the ultrasonic blade retracts proximally.

5. The articulable surgical instrument of claim 4 , wherein the distal portion of the ultrasonic blade contacts an inner portion of the shaft when in the second configuration.

6. The articulatable surgical instrument of claim 4 , wherein the ultrasonic blade is resilient such that the distal portion increases upon extension distally from the shaft in the first configuration.

7. An end effector of a surgical instrument comprising:

a shaft extending along a longitudinal axis; and

a curved ultrasonic blade positioned within the shaft and translatable relative to the shaft along the longitudinal axis;

wherein the curved ultrasonic blade comprises a proximal portion that is curved in a first direction away from the longitudinal axis, an intermediate portion that is curved in a second direction away from the longitudinal axis and opposite the first direction, and a distal portion that extends from the intermediate portion in the first direction, wherein the ultrasonic blade is manufactured such that the curvature of the proximal portion and the curvature of the intermediate portion are balanced to both have a vibrational mode purely in the direction of the longitudinal axis.

8. The end effector of claim 7 , wherein the curvature of the proximal portion and the curvature of the intermediate portion both comprise a node and/or anti-node that occurs at a point of tangency when the ultrasonic blade is driven at a resonant frequency.

9. The end effector of claim 7 , wherein the distal portion of the ultrasonic blade extends beyond the shaft in a lateral direction relative to the longitudinal axis, when in a first configuration when the ultrasonic blade protracts distally.

10. The end effector of claim 9 , wherein the distal portion of the ultrasonic blade is configured to fully retract within the shaft when in a second configuration when the ultrasonic blade retracts proximally.

11. The end effector of claim 10 , wherein the distal portion of the ultrasonic blade contacts an inner portion of the shaft when in the second configuration.

12. The end effector of claim 10 , wherein the ultrasonic blade is resilient such that the distal portion increases upon extension distally from the shaft in the first configuration.

13. A system comprising:

a generator configured to delivery ultrasonic energy; and

a surgical instrument coupled to the generator, the surgical instrument comprising:

a shaft extending along a longitudinal axis; and

an end effector configured to treat tissue, the end effector comprising a curved ultrasonic blade positioned within the shaft and translatable relative to the shaft along the longitudinal axis;

wherein the curved ultrasonic blade comprises a proximal portion that is curved in a first direction away from the longitudinal axis, an intermediate portion that is curved in a second direction away from the longitudinal axis and opposite the first direction, and a distal portion that extends from the intermediate portion in the first direction, wherein the ultrasonic blade is manufactured such that the curvature of the proximal portion and the curvature of the intermediate portion are balanced to both have a vibrational mode purely in the direction of the longitudinal axis.

14. The system of claim 13 , wherein the curvature of the proximal portion and the curvature of the intermediate portion both comprise a node and/or anti-node that occurs at a point of tangency when the ultrasonic blade is driven at a resonant frequency.

15. The system of claim 13 , wherein the distal portion of the ultrasonic blade extends beyond the shaft in a lateral direction relative to the longitudinal axis, when in a first configuration when the ultrasonic blade protracts distally.

16. The system of claim 15 , wherein the distal portion of the ultrasonic blade is configured to fully retract within the shaft when in a second configuration when the ultrasonic blade retracts proximally.

17. The system of claim 16 , wherein the distal portion of the ultrasonic blade contacts an inner portion of the shaft when in the second configuration.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 14, 2022
From: OLSON, WILLIAM A.; MESSERLY, JEFFREY D.; PRICE, DANIEL W.; HOUSER, KEVIN L.; FALLER, CRAIG N.; DANNAHER, WILLIAM D.; MUHLENKAMP, TYLOR C.
To: ETHICON ENDO-SURGERY, LLC
Reel/Frame 061428/0528 →
CHANGE OF NAME Recorded Oct 14, 2022
From: ETHICON ENDO-SURGERY, LLC
To: ETHICON LLC
Reel/Frame 061428/0708 →
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 Jun 24, 2020
From: OLSON, WILLIAM A.; MESSERLY, JEFFREY D.; PRICE, DANIEL W.; HOUSER, KEVIN L.; FALLER, CRAIG N.; DANNAHER, WILLIAM D.; RHEE, SORA; MUHLENKAMP, TYLOR C.
To: ETHICON LLC
Reel/Frame 053021/0291 →
Continuity (3)
Division 15187553 · Jun 20, 2016
Division 13538588 · Jun 29, 2012
Related Publication 20200229834A1 · Jul 23, 2020
Cited By (6)
US 12,193,698 US 12,408,967 US 12,453,571 US 12,465,384 US 12,653,568 US 12,702,466