IP Library › Granted Patent US 11,723,581
Granted Patent B2
US 11,723,581 · App. 16/661,283 · Granted Aug 15, 2023

Electromyography sensor

Inventors: Hugh M. Herr (Somerville, MA); Seong Ho Yeon (Cambridge, MA)
Assignee: Massachusetts Institute of Technology
A61B5/389A61B5/688A61F2/64A61F2/6607A61F2/72G06F3/015A61F2/741A61F2002/6664
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Quick Facts
Patent No.
US 11,723,581
App. No.
16/661,283
Granted
Aug 15, 2023
Kind
B2
Abstract

An electromyography (EMG) sensor for a wearable device, such as a prosthetic device attachable to a residual limb, includes a flexible substrate comprising an elongated portion and an electrode portion. At least two electrodes are disposed at a surface of the electrode portion of the flexible substrate, and leads from the at least two electrodes extend through the elongated portion of the flexible substrate.

Claims (38)

1. An electromyography sensor for a wearable device comprising:

a flexible substrate comprising an elongated portion and an electrode portion;

at least two electromyography electrodes disposed at a surface of the electrode portion of the flexible substrate, a thickness of the electrode portion of the flexible substrate and the at least two electromyography electrodes being in the range of about 50 μm to about 500 μm;

leads extending from the at least two electromyography electrodes through the elongated portion of the flexible substrate; and

connectors at the end of the leads;

the electromyography sensor configured to be positioned within a prosthetic liner to be fit over a residual limb with the two electromyography electrodes facing inwardly to contact skin of the residual limb, the elongated portion extending along the prosthetic liner to position the connectors to be engaged with and decoupled from electromyography electronics associated with a prosthetic socket positioned over the liner and residual limb.

2. A liner for a prosthetic socket comprising:

compressible liner material configured to be fit over a residual limb and disposed between the limb and the prosthetic socket; and

an electromyography sensor comprising:

a flexible substrate comprising an elongated portion and an electrode portion;

at least two electromyography electrodes disposed at a surface of the electrode portion of the flexible substrate;

leads extending from the at least two electrodes through the elongated portion of the flexible substrate; and

connectors at the end of the leads;

the electromyography sensor positioned within the compressible liner material with the two electromyography electrodes facing inwardly to contact skin of the residual limb, the elongated portion extending along the prosthetic liner material to position the connectors to be engaged with and decoupled from electromyography electronics associated with the prosthetic socket.

3. The liner of claim 2 wherein a thickness of the electrode portion of the flexible substrate and the at least two electrodes is in the range of about 50 μm to about 500 μm.

4. The liner of claim 2 wherein a thickness of the electrode portion of the flexible substrate and the at least two electrodes is in the range of about 50 μm to about 120 μm.

5. The liner of claim 2 wherein the at least two electrodes are dry, passive electrodes.

6. The liner of claim 2 wherein each of the at least two electrodes comprises a flexible metal layer, the flexible substrate and the flexible metal layers configured to conform to a skin surface.

7. The liner of claim 2 wherein the at least two electrodes are disposed at a relative center-to-center distance in the range of about 1 cm to about 4 cm.

8. The liner of claim 2 wherein the at least two electrodes are disposed at a relative center-to-center distance in the range of about 1.5 cm to about 2 cm.

9. The liner of claim 2 wherein a diameter of each the at least two electrodes is in the range of about 0.5 cm to about 1.5 cm.

10. The liner of claim 2 wherein the substrate is non-woven.

11. The liner of claim 2 wherein the substrate comprises a flexible polymer.

12. The liner of claim 2 wherein the substrate comprises polyimide.

13. The liner of claim 2 wherein the electromyography sensor is adhered to an inner surface of the liner material.

14. The liner of claim 2 wherein an inner surface of the liner material comprises a recess configured to receive the electrode portion of the electromyography sensor.

15. The liner of claim 2 , wherein at least one of the electromyography sensor and the liner material comprises a fastener configured to fasten the electromyography sensor to an inner surface of the liner material.

16. The liner of claim 15 , wherein the flexible substrate of the electromyography sensor comprises a plurality of holes configured to receive complimentary projections disposed within the inner surface of the liner material.

17. The liner of claim 2 , wherein the elongated portion of the electromyography sensor is disposed between an inner layer and an outer layer of the liner material, the elongated portion comprising a serpentine or corrugated shape configured to extend upon stretching of the liner material.

18. The liner of claim 2 , wherein the elongated portion of the electromyography sensor is disposed to extend over a proximal end of the liner material.

19. The liner of claim 2 , wherein the elongated portion of the electromyography sensor is disposed to position the connectors to at a distal end of the liner material to make electrical connection with the prosthetic socket.

20. The liner of claim 2 , wherein the elongated portion of the electromyography sensor is disposed to position the connectors to engage with a portable electromyography device in communication with the prosthetic socket.

21. A method of processing electromyography signals from a residual limb comprising:

placing the liner of claim 2 over the residual limb with the electromyography electrodes contacting skin of the residual limb;

placing a prosthetic socket over the liner and residual limb;

engaging the connectors with electromyography electronics; and

processing electromyography signals from the electromyography electrodes in the electromyography electronics.

22. The method of claim 21 further comprising controlling a prosthetic device that includes the prosthetic socket with the processed electromyography signals.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2020
From: HERR, HUGH M.; YEON, SEONG HO
To: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Reel/Frame 051729/0872 →
Continuity (2)
Provisional Application 62749230 · Oct 23, 2018
Related Publication 20200121210A1 · Apr 23, 2020