IP Library Granted Patent US 11,576,791
Granted Patent B1
US 11,576,791 · App. 17/080,193 · Granted Feb 14, 2023

Devices and techniques for hip revision surgery

Inventors: Michael Bozeman (Austin, TX); Monali Shah (Memphis, TN); Roy Messina (Memphis, TN); Andrea Karduss (Memphis, TN); Jeffrey J. Shea (Memphis, TN)
Assignees: Smith & Nephew, Inc.; Smith & Nephew Orthopaedics AG; Smith & Nephew Asia Pacific Pte. Limited
A61F2/4609A61B17/1666A61B2017/00146A61B2017/00402A61B2217/007
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Quick Facts
Patent No.
US 11,576,791
App. No.
17/080,193
Granted
Feb 14, 2023
Kind
B1
Abstract

Piezoelectric osteotomy devices and corresponding systems and methods for removing an acetabular cup or shell from a patient's acetabulum are disclosed. In one embodiment, the piezoelectric osteotomy device includes a piezoelectric element to actuate a cutting tip on an armature. In some such embodiments, the cutting tip may be extended and/or retracted to facilitate cutting of bone around an acetabular cup. The armature may include a fluid output port located proximate the cutting tip to mitigate heat generated by the cutting tip. In one embodiment, the piezoelectric osteotomy device is arranged and configured to provide constant current adjustment.

Claims (24)

1. A medical device, comprising

an armature including a cutting tip; and

a body coupled to the armature, the body including an actuation mechanism with a piezoelectric element, a user interface, and an armature extension mechanism configured to extend the armature based on operation of the user interface.

2. The medical device of claim 1 , the armature configured to match a curvature of an acetabular cup.

3. The medical device of claim 1 , wherein extension of the armature is configured to follow a curvature of an acetabular cup.

4. The medical device of claim 1 , wherein the actuation mechanism with the piezoelectric element is configured to move the cutting tip at a frequency and amplitude based on operation of the user interface.

5. The medical device of claim 4 , wherein the frequency is between 22 to 29 kilohertz.

6. The medical device of claim 4 , wherein the amplitude is between 60 and 210 micrometers.

7. The medical device of claim 4 , wherein one or more of the frequency and the amplitude are selectable.

8. The medical device of claim 1 , wherein the piezoelectric element comprises one or more ceramic discs.

9. The medical device of claim 1 , wherein the actuation mechanism comprises a motion amplifier to translate motion of the piezoelectric element into motion of the cutting tip.

10. The medical device of claim 9 , wherein the motion of the cutting tip has a larger amplitude than the motion of the piezoelectric element.

11. The medical device of claim 1 , wherein the armature comprises a fluid output port configured to deliver fluid proximate the cutting tip based on operation of the user interface.

12. The medical device of claim 11 , wherein the body comprises a fluid input port configured to couple with a fluid source, wherein the fluid input port is in fluid communication with the fluid output port, at least in part, via a fluid channel in the armature.

13. The medical device of claim 1 , wherein the body comprises a drive signal input, the drive signal input configured to couple with a signal generator.

14. The medical device of claim 13 , wherein the actuation mechanism is configured to apply an electromagnetic field to the piezoelectric element based on a signal received via the drive signal input to cause motion in the cutting tip.

15. The medical device of claim 1 , wherein the armature extension mechanism comprises a worm gear.

16. A method, comprising:

operating, via a user interface, an actuation mechanism with a piezoelectric element comprised in a body to cause motion in a cutting tip included in a curvilinear armature coupled to the body; and

extending the curvilinear armature, wherein the curvilinear armature is configured to match a curvature of an acetabular cup.

17. The method of claim 16 , further comprising causing fluid to exit a fluid output port proximate the cutting tip based on operation of the user interface.

18. The method of claim 16 , further comprising operating the user interface to extend the curvilinear armature.

19. The method of claim 16 , wherein extension of the curvilinear armature is configured to follow the curvature of the acetabular cup.

20. The method of claim 16 , further comprising controlling one or more of amplitude and frequency of motion in the cutting tip based on operation of the user interface.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2022
From: BOZEMAN, MICHAEL; SHAH, MONALI; MESSINA, ROY; KARDUSS, ANDREA; SHEA, JEFFREY J.
To: SMITH & NEPHEW, INC.
Reel/Frame 061045/0514 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2022
From: SMITH & NEPHEW, INC.
To: SMITH & NEPHEW, INC.; SMITH & NEPHEW ORTHOPAEDICS AG; SMITH & NEPHEW PTE. LIMITED
Reel/Frame 061045/0575 →
CHANGE OF NAME Recorded Sep 9, 2022
From: SMITH & NEPHEW PTE. LIMITED
To: SMITH & NEPHEW ASIA PACIFIC PTE. LIMITED
Reel/Frame 061405/0921 →
Continuity (1)
Provisional Application 62926925 · Oct 28, 2019