IP Library Granted Patent US 11,806,253
Granted Patent B2
US 11,806,253 · App. 16/934,784 · Granted Nov 7, 2023

Lanyard systems for prosthetic devices and related methods

Inventors: Joseph A Mahon (Salt Lake City, UT); Nicholas E. Scoville (Salt Lake City, UT); Simon T. Scoville (Salt Lake City, UT); James A. Capra (Steamboat Springs, CO); Arni Thor (San Diego, CA)
Assignee: Click Holdings, LLC
A61F2/78A61F2/0095A61F2/66A61F2/76A61F2/80A61F2002/5056A61F2002/7831A61F2002/802Y10T29/49863
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Quick Facts
Patent No.
US 11,806,253
App. No.
16/934,784
Granted
Nov 7, 2023
Kind
B2
Abstract

A prosthesis device can include a socket or a kit for forming a socket having a lanyard suspension system. In one example, the lanyard suspension system includes a tightening device having a housing, and tightening the lanyard gathers a tensioning line portion of the lanyard into an interior of the housing.

Claims (32)

1. A method of fabricating a prosthetic socket, comprising:

forming a socket comprising a sidewall, a cavity configured to receive a liner, a distal end, and a guide path, wherein the guide path extends proximally from the distal end of the socket;

inserting a tensioning line through the guide path;

coupling a tightening mechanism to the socket, wherein an entire length of the guide path extends within the sidewall from the distal end of the socket to the tightening mechanism;

wherein the tightening mechanism is configured to control movement of the tensioning line such that the tensioning line is configured to draw the liner into the cavity of the socket and towards the distal end of the socket.

2. The method of claim 1 , wherein the guide path comprises a diverter disposed at the distal end of the socket, wherein the diverter is configured to redirect the tensioning line from a first direction in which the tensioning line enters the diverter to a second direction that is substantially perpendicular to the first direction.

3. The method of claim 2 , wherein the guide path further comprises a conduit coupled to the diverter, the conduit defining a duct, wherein the conduit is continuously embedded in the sidewall of the socket from the diverter to the tightening device.

4. The method of claim 1 , wherein the tightening mechanism comprises an actuator configured to control movement of the tensioning line, wherein actuation of the actuator increases or decreases tension in the tensioning line.

5. The method of claim 4 , wherein the tightening mechanism further comprises a housing that is configured to be selectively attached to a base and selectively removed from the base.

6. The method of claim 1 , wherein the socket comprises one or more laminated layers.

7. The method of claim 1 , wherein the socket comprises one or more plastic resins.

8. The method of claim 1 , wherein the socket comprises one or more 3D printed structures.

9. The method of claim 1 , wherein the tightening mechanism is configured to apply a tension force to the tensioning line to displace the liner downwardly into the cavity of the socket along a longitudinal axis of the socket.

10. The method of claim 1 , wherein the tightening mechanism comprises a dial coupled to a spool, wherein rotation of the dial effects rotation of the spool to wind or unwind the tensioning line about the spool to increase or decrease tension in the tensioning line.

11. The method of claim 1 , wherein the tightening mechanism comprises a motor to effect automated tightening or loosening of the tensioning line.

12. A method of fabricating a prosthetic socket, comprising:

forming a socket comprising a sidewall, a cavity configured to receive a liner, a distal end, a diverter, and a guide path, wherein an entire length of the guide path is disposed within the sidewall and extends proximally from the diverter disposed at the distal end of the socket;

inserting a tensioning line through the diverter and through the guide path, wherein the diverter is configured to redirect the tensioning line from a first direction in which the tensioning line enters the diverter to a second direction that is substantially perpendicular to the first direction;

coupling a tightening mechanism to the socket, wherein the guide path extends within the sidewall from the diverter to the tightening mechanism;

wherein the tightening mechanism is configured to apply a tension force to the tensioning line to displace the liner downwardly into the cavity of the socket along a longitudinal axis of the socket.

13. The method of claim 12 , wherein the tightening mechanism comprises an actuator configured to control movement of the tensioning line, wherein actuation of the actuator increases or decreases tension in the tensioning line.

14. The method of claim 13 , wherein the tightening mechanism further comprises a housing that is configured to be selectively attached to a base and selectively removed from the base.

15. The method of claim 12 , wherein the socket comprises one or more laminated layers.

16. The method of claim 12 , wherein the socket comprises one or more plastic resins.

17. The method of claim 12 , wherein the socket comprises one or more 3D printed structures.

18. A method of fabricating a prosthetic socket, comprising:

forming a socket comprising a sidewall, a cavity configured to receive a liner, a distal end, and a guide path, wherein the guide path extends proximally from the distal end of the socket;

inserting a tensioning line through the guide path;

coupling a tightening mechanism to the socket, wherein the guide path extends within the sidewall from the distal end of the socket toward the tightening mechanism;

wherein the tightening mechanism is configured to control movement of the tensioning line such that the tensioning line is configured to draw the liner into the cavity of the socket and towards the distal end of the socket, the sidewall of the socket being substantially rigid so as to maintain a form of the sidewall when forces are applied during use.

19. The method of claim 18 , wherein the socket comprises one or more laminated layers.

20. The method of claim 18 , wherein the socket comprises one or more 3D printed structures.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2020
From: MAHON, JOSEPH A.; SCOVILLE, NICHOLAS E.; SCOVILLE, SIMON T.; CAPRA, JAMES A.; THOR, ARNI
To: CLICK HOLDINGS, LLC
Reel/Frame 053278/0583 →
Continuity (3)
Continuation 15284515 · Oct 3, 2016
Provisional Application 62236852 · Oct 2, 2015
Related Publication 20200345521A1 · Nov 5, 2020
Cited By (1)
US 12,708,545