SYSTEMS AND METHODS FOR INTEGRATING ELECTRONICS AND SENSORS INTO A WEARABLE THERAPEUTIC JOINT SUPPORT GARMENT
The disclosure is direct to a unique system for delivering NMES and/or TENS therapy to one or more portions of a biological structure. In some embodiments, the biological structure includes a limb such as an elbow or knee. In some embodiments, the system includes a flexible panel with an integrated flexible circuit. In some embodiments, the flexible panel is configured to couple to and bend with a garment. In some embodiments, the flexible panel enables the coupling of one or more electrodes. In some embodiments, the flexible panel is removable from the garment which allows for the garment to be washed without exposing flexible panel electrical connections to submersion in a fluid.
1 . A system comprising:
a garment,
one or more electrodes, and
at least one controller;
wherein the garment is configured to wrap around a biological joint;
wherein the one or more electrodes are coupled to the garment;
wherein the at least one controller is coupled to the one or more electrodes;
wherein the at least one controller is configured to send one or more electrical pulses to the one or more electrodes while the garment is wrapped around the biological joint; and
wherein the one or more electrical pulses are configured to stimulate one or more of a nerve and a muscle in an area of the biological joint.
2 . The system of claim 1 , further comprising:
an electrical panel;
wherein the one or more electrodes are coupled to the electrical panel; and
wherein the electrical panel is coupled to the garment.
3 . The system of claim 2 ,
wherein the electrical panel comprises an electrical circuit; and
wherein the electrical circuit is configured to transmit the one or more electrical pulses to the one or more electrodes.
4 . The system of claim 3 ,
wherein the electrical panel is a flexible electrical panel; and
wherein the flexible electrical panel is configured to at least partially conform to a shape of the garment when the garment is deformed during a wrapping around the biological joint.
5 . The system of claim 4 ,
wherein the electrical panel is configured to be detachably removed from the garment.
6 . The system of claim 5 ,
wherein at least a portion of the electrical panel is configured to pass through a hollow portion of the garment.
7 . The system of claim 5 ,
wherein the electrical panel comprises at least one controller coupling;
wherein the at least one controller coupling is configured to surround at least a portion of the at least one controller; and
wherein the at least one controller is configured to be detachably coupled to the at least one controller coupling.
8 . The system of claim 7 ,
wherein the garment comprises a main body and one or more arms;
wherein the one or more arms extend away from the main body;
wherein the main body is configured and arranged to extend past a parameter of the electrical panel;
wherein the main body comprises a hollow portion; and
wherein at least one of the at least one controller and the at least one controller coupling are configured to pass through the hollow portion of the main body when the electrical panel is coupled to the main body.
9 . The system of claim 8 ,
wherein the one or more arms are two arms;
wherein a first arm of the two arms comprises a first length;
wherein a second arm of the two arms comprises a second length; and
wherein the first length is different from the second length.
10 . The system of claim 8 ,
wherein the electrical panel comprises at least one controller coupling;
wherein the at least one controller coupling is configured to surround at least a portion of the at least one controller;
wherein the at least one controller is configured to be detachably coupled to the at least one controller coupling; and
wherein at least one of the at least one controller and the at least one controller coupling are configured to pass through the hollow portion of the main body when the electrical panel is coupled to the main body.
11 . The system of claim 10 ,
wherein the electrical circuit is a flexible electrical circuit;
wherein the flexible electrical circuit includes one or more electrode couplings; and
wherein the one or more electrode couplings are each configured to enable removable electrical coupling of each of the one or more electrodes.
12 . The system of claim 11 ,
wherein each of the one or more electrode couplings comprise one or more flexible fingers extending from a center of the one or more electrode couplings.
13 . The system of claim 12 ,
wherein the one or more flexible fingers are configured to prevent a bunching of the electrical panel in an area of the one or more flexible fingers when the flexible electrical panel is deformed with a deformation of the garment.
14 . The system of claim 12 ,
wherein the flexible electrical circuit comprises one or more electricity flow paths;
wherein the one or more electricity flow paths are configured to deliver electricity from the at least one controller to the one or more electrode couplings; and
wherein at the one or more electricity flow paths are configured to extend along a finger length of at least one of the one or more flexible fingers at each of the one or more electrode couplings.
15 . The system of claim 14 ,
wherein the flexible electrical circuit, the one or more electricity flow paths, and the one or more flexible fingers are housed within an internal portion of the electrical panel.