IP Library Granted Patent US 12,232,745
Granted Patent B2
US 12,232,745 · App. 17/682,354 · Granted Feb 25, 2025

Surgical saw with sensing technology for determining cut through of bone and depth of the saw blade during surgery

Inventors: Joseph C. McGinley (Casper, WY); Lawson Fisher (Palo Alto, CA); Devjeet Mishra (Palo Alto, CA); Jim McCrea (Palo Alto, CA); Brian Bliven (Palo Alto, CA); Martin Leugers (Palo Alto, CA)
Assignee: McGinley Engineered Solutions, LLC
A61B17/142A61B17/15A61B17/1615A61B17/320068A61B17/3213A61L2/07B08B3/04B08B3/08A61B2017/00017A61B2017/00022A61B2017/00075A61B17/149A61B17/320758A61B2090/061A61B2090/062A61B2090/064A61B2090/0812A61B2090/0813A61B2090/0814
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Quick Facts
Patent No.
US 12,232,745
App. No.
17/682,354
Granted
Feb 25, 2025
Kind
B2
Abstract

Sensing technology methods related thereto for determining cut through of bone and a depth of penetration of a working portion of a surgical instrument (e.g., an oscillating saw blade in a cut). A first sensor outputs a first signal representative of a displacement of the cutting edge of the saw blade in the cut. A second sensor outputs a second signal representative of a force applied to the cutting edge of the saw blade. As such, monitoring the first and/or second sensor may allow for the saw to be stopped upon completion of a cut (e.g., when the saw passes completely through a medium to be cut or upon reaching a predetermined depth for the cut).

Claims (34)

1. A saw blade assembly for use in a medical saw for single use applications, the saw blade assembly comprising:

a cutting edge disposed at a distal end of a saw blade;

a shank disposed adjacent to a proximal end of the saw blade;

a blade member extending between the distal end and the proximal end;

and

a destructible portion that is at least partially destructible during a cleaning process, wherein the destructible portion is meltable.

2. The saw blade assembly according to claim 1 , wherein a melting temperature of the destructible portion is greater than an operating temperature of the saw blade and less than an autoclave temperature.

3. The saw blade assembly according to claim 2 , wherein the melting temperature of the destructible portion is not less than about 60° C. and not greater than about 110° C.

4. The saw blade assembly according to claim 1 , wherein the destructible portion comprises a proximal end portion of the shank.

5. The saw blade assembly according to claim 4 , wherein the destructible portion comprises at least a portion of an engagement feature for engagement of the shank by a chuck.

6. The saw blade assembly according to claim 5 , wherein the destructible portion, after having been exposed to a cleaning process, is not registerable with respect to the chuck.

7. The saw blade assembly according to claim 1 , wherein the destructible portion comprises a portion of a bushing of the saw blade assembly.

8. The saw blade assembly according to claim 7 , wherein the destructible portion comprises an engagement portion of the bushing.

9. The saw blade assembly according to claim 7 , wherein the destructible portion comprises a portion of the bushing constraining the bushing to the blade member, wherein upon destruction of the destructible portion, the bushing is not constrained to the blade member.

10. A method for a tool assembly for use in an instrument for single use applications, comprising:

exposing a tool of the tool assembly to a cleaning process; and

degrading at least a portion of a destructible portion of the tool assembly in response to the exposing, wherein the degrading comprises melting at least a portion of the destructible portion.

11. The method according to claim 10 , wherein the tool comprises a saw blade and wherein exposing comprises autoclaving the saw blade.

12. The method according to claim 11 , wherein the degrading comprises melting at least the portion of the destructible portion in response to the autoclaving.

13. The method according to claim 12 , wherein the melting occurs at a temperature of not less than about 60° C. and not greater than about 110° C.

14. The method according to claim 10 , wherein the exposing comprises applying a cleaning chemical to the tool assembly and the degrading comprises removing of at least a portion of the destructible portion in response to applying the cleaning chemical.

15. The method according to claim 10 , wherein the tool comprises a saw blade and the degrading results in changing a shape of a shank of the saw blade.

16. The method according to claim 15 , wherein the degrading comprises removing at least a portion of the destructible portion at a shank of the saw blade.

17. The method according to claim 16 , wherein the portion of the destructible portion removed comprises at least a portion of an engagement feature for engagement of the shank by a chuck.

18. The method according to claim 12 , wherein the degrading results in reducing a registration of the shank with respect to a chuck of a saw.

19. The method according to claim 10 wherein the tool comprises a saw blade and wherein the degrading comprises removing at least a portion of the destructible portion at a bushing.

20. The method according to claim 19 , wherein the degrading comprises destroying an engagement portion of the bushing.

21. The method according to claim 20 , wherein the degrading comprises destroying a portion of the bushing constraining the bushing to a blade member, wherein upon the destroying of the destructible portion, the bushing is not constrained to the blade member.

22. A tool including a tool portion penetration measuring system for determining, with respect to a reference point, a depth of penetration of an edge of the tool portion, the tool comprising:

a chuck for engagement with a shank of the tool portion, wherein the chuck is operable to constrain the tool portion engaged by the chuck to limit relative axial movement relative to an operating direction of the tool portion;

a displacement sensing arm extending from the tool, wherein the displacement sensing arm is engageable with a bushing member that is constrainedly moveable relative to the tool portion along the operating direction of the tool portion when the tool portion is engaged by the chuck; and

a displacement sensor disposed in a fixed relative position with respect to the tool portion engaged by the chuck at least in a direction corresponding to a length of the tool portion, the displacement sensing arm being adapted for relative movement with respect to the displacement sensor, wherein the displacement sensor is operative to output a first signal representative of the displacement of the displacement sensing arm relative to the displacement sensor;

wherein the movement of the displacement sensing arm relative to the tool corresponds to displacement of the bushing relative to the tool portion engaged by the chuck.

23. The tool according to claim 22 , wherein the displacement sensor is disposed internally to a tool housing and the displacement sensing arm extends from the tool housing.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2025
From: MCGINLEY, JOSEPH C.; FISHER, LAWSON; MISHRA, DEVJEET; MCCREA, JIM; BLIVEN, BRIAN; LEUGERS, MARTIN
To: MCGINLEY ENGINEERED SOLUTIONS, LLC
Reel/Frame 069863/0131 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2022
From: MCGINLEY, JOSEPH C.; LEUGERS, MARTIN; BLIVEN, BRIAN; FISHER, LAWSON; MCCREA, JIM; MISHRA, DEVJEET
To: MCGINLEY ENGINEERED SOLUTIONS, LLC
Reel/Frame 059117/0745 →
Continuity (6)
Continuation 16433056 · Jun 6, 2019
Continuation 15274475 · Sep 23, 2016
Continuation 14614125 · Feb 4, 2015
Continuation 14537586 · Nov 10, 2014
Provisional Application 61902002 · Nov 8, 2013
Related Publication 20220175395A1 · Jun 9, 2022
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