IP Library Granted Patent US 11,006,849
Granted Patent B2
US 11,006,849 · App. 15/864,531 · Granted May 18, 2021

High performance sensors for electrical impedance myography

Inventors: Elmer C Lupton (Charlestown, MA); Haydn Taylor (Windham, NH); Jose L Bohorquez (San Francisco, CA); Ken Li (Wellesley, MA); Michael Rinehart (San Jose, CA)
Assignee: Myolex Inc.
A61B5/053A61B5/0537A61B5/4519A61B5/486A61B5/684A61B5/6843A61B5/7221A61B5/7225A61B5/7278A61B5/742A61B5/7405A61B5/7475A61B5/6832A61B5/6833A61B5/7228A61B5/7235A61B2017/0023A61B2560/0412A61B2560/0431A61B2560/0443A61B2560/0468A61B2562/0223A61B2562/04A61B2562/046A61B2562/14A61B2562/164A61B2562/166F04C2270/041
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Quick Facts
Patent No.
US 11,006,849
App. No.
15/864,531
Granted
May 18, 2021
Kind
B2
Abstract

Embodiments of devices and methods for evaluating tissue are disclosed. In one embodiment, a method for measuring a characteristic of a tissue may include passing a current through the tissue, measuring a signal corresponding to the voltage resulting from passing the current through the tissue, analyzing current passed through the tissue and resulting voltage to determine the electrical characteristics of the tissue; and analyzing the electrical characteristics of the tissue to determine a status of the tissue. Disposable sensors are disclosed.

Claims (22)

1. A method for measuring a localized biological transfer impedance (LBTI) of a tissue using a device including a sensor with a plurality of electrodes, the plurality of electrodes including at least a pair of current electrodes and a pair of voltage electrodes, wherein the sensor includes a flex circuit on which the at least pair of current electrodes and the pair of voltage electrodes are mounted, the flex circuit having at least a first side portion, a second side portion, a third side portion, and a fourth side portion, wherein the first side portion and the third side portion are each fixed to a single rigid housing to restrict motion, and the second side portion and the fourth side portion are allowed to move freely, the method comprising: positioning the plurality of electrodes of the device in contact with a portion of the tissue; passing a current through the tissue using the pair of current electrodes; measuring a signal corresponding to a voltage resulting from the current across the pair of voltage electrodes; verifying electrical contact between (i) the tissue and the pair of current electrodes, and (ii) the tissue and the pair of voltage electrodes; indicating to a user of the device, a status of electrical contact between the tissue and at least one electrode of the plurality of electrodes; and analyzing the current passed through the tissue and the measured signal to determine the localized biological transfer impedance (LBTI) of the tissue; and

wherein the sensor comprises at least one pad with a hydrophilic coating.

2. The method of claim 1 in which the hydrophilic coating comprises a foam block.

3. The method of claim 2 in which the foam block is selected from a group consisting of polyurethane, cellulose, EPDM and latex.

4. The method of claim 2 in which the foam block is infused with saline.

5. The method of claim 1 in which the hydrophilic coating comprises polyurethane foam.

6. The method of claim 1 in which the single rigid housing comprises a material selected from a group consisting of polycarbonate, ABS, polystyrene, nylon and moldable polyester.

7. The method of claim 6 in which the material selected from the group consisting of polycarbonate, ABS, polystyrene, nylon and moldable polyester is filled or reinforced.

8. The method of claim 7 in which the filled or reinforced material selected from a group consisting of polycarbonate, ABS, polystyrene, nylon and moldable polyester is injection molded.

9. The method of claim 1 in which the single rigid housing comprises a material which is filled or reinforced.

10. The method of claim 1 in which the single rigid housing is injection molded.

11. A device for measuring a localized biological transfer impedance (LBTI) of a tissue, comprising: a plurality of electrodes provided in a sensor, wherein the sensor includes a flex circuit on which at least a pair of current electrodes and a pair of voltage electrodes are mounted, the flex circuit at least a first side portion, a second side portion, a third side portion, and a fourth side portion, the first side portion located opposite the third side portion, wherein the first side portion and the third side portion are each fixed to a single rigid housing to restrict motion, and the second side portion and the fourth side portion are allowed to move freely; a power supply operably coupled to the plurality of electrodes to supply a signal through the tissue; analytical electronics operably coupled to the plurality of electrodes for analyzing an input current and resulting voltage to determine the localized biological transfer impedance (LBTI) of the tissue; and electronics configured to indicate to a user (i) a result of analysis performed by the analytical electronics, and (ii) a status of electrical contact between at least one electrode of the plurality of electrodes and the tissue; and

wherein the sensor comprises at least one pad with a hydrophilic coating.

12. The device of claim 11 in which the hydrophilic coating comprises a foam block.

13. The device of claim 12 in which the foam block is selected from a group consisting of polyurethane, cellulose, EPDM and latex.

14. The device of claim 12 in which the foam block is infused with saline.

15. The device of claim 11 in which the hydrophilic coating comprises polyurethane foam.

16. The device of claim 11 in which the single rigid housing comprises a material selected from a group consisting of polycarbonate, ABS, polystyrene, nylon and moldable polyester.

17. The device of claim 16 in which the material selected from the group consisting of polycarbonate, ABS, polystyrene, nylon and moldable polyester is filled or reinforced.

18. The method of claim 17 in which the filled or reinforced material selected from a group consisting of polycarbonate, ABS, polystyrene, nylon and moldable polyester is injection molded.

19. The device of claim 11 in which the single rigid housing comprises a material which is filled or reinforced.

20. The device of claim 11 in which the single rigid housing is injection molded.

Assignments (5)
CONFIRMATORY LICENSE Recorded Jan 30, 2024
From: MYOLEX, INC
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 066378/0809 →
CONFIRMATORY LICENSE Recorded Feb 6, 2023
From: MYOLEX, INC
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 062652/0065 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2019
From: BOHORQUEZ, JOSE L; LUPTON, ELMER C; RINEHART, MICHAEL; LI, KEN; TAYLOR, HAYDN
To: CONVERGENCE MEDICAL DEVICES
Reel/Frame 050158/0919 →
CHANGE OF NAME Recorded Aug 24, 2019
From: CONVERGENCE MEDICAL DEVICES
To: SKULPT INC
Reel/Frame 050159/0918 →
CHANGE OF NAME Recorded Aug 24, 2019
From: SKULPT INC
To: MYOLEX INC
Reel/Frame 050159/0921 →
Continuity (5)
Continuation 14826134 · Aug 13, 2015
Division 13842698 · Mar 15, 2013
Continuation In Part 13823659 · Jul 5, 2013
Provisional Application 61775620 · Mar 10, 2013
Related Publication 20180177427A1 · Jun 28, 2018