Systems and methods for therapeutic application of energy
A system for controlling blood pressure includes a wearable interface having an internal contact surface, the wearable interface configured to at least partially encircle a first portion of a first limb of a subject, a sensing module carried by the wearable interface and configured to determine at least a change in blood pressure of the first limb of the subject, and an energy application module carried by the wearable interface and configured to apply energy of two or more types to the first limb of the subject.
1. A system comprising:
a wearable interface having an internal contact surface, the wearable interface configured to at least partially encircle a first portion of a first limb of a subject;
an energy application module carried by the wearable interface and configured to apply energy of two or more types to the first limb of the subject, wherein the energy application module comprises a plurality of flexible electrodes configured to be operated such that the plurality of flexible electrodes apply a focused effect on a nerve of the first limb of the subject, wherein the energy application module further comprises a plurality of piezoelectrics, and wherein at least one of the plurality of flexible electrodes and at least one of the plurality of piezoelectrics comprise a layered pair.
2. A system comprising:
a wearable interface having an internal contact surface, the wearable interface configured to at least partially encircle a first portion of a first limb of a subject;
an energy application module carried by the wearable interface and configured to apply energy of two or more types to the first limb of the subject, wherein the energy application module comprises a plurality of stretchable electrodes configured to be operated such that the plurality of stretchable electrodes apply a focused effect on a nerve of the first limb of the subject, wherein the energy application module further comprises a plurality of piezoelectrics, and wherein at least one of the plurality of stretchable electrodes and at least one of the plurality of piezoelectrics comprise a layered pair.
3. The system of claim 1 , further comprising:
a sensor carried by the wearable interface and configured to be in proximity of the first portion of the first limb of the subject and to output a signal for determining at least a change in blood pressure of the subject at the first limb.
4. The system of claim 1 , wherein the plurality of flexible electrodes and the plurality of piezoelectrics are configured to contribute to the focused effect on a nerve selected from the list consisting of: a median nerve, a radial nerve, and an ulnar nerve.
5. The system of claim 1 , wherein the wearable interface is configured to at least partially encircle a leg of the subject.
6. The system of claim 1 , wherein at least one of the plurality of flexible electrodes comprises a hydrogel.
7. The system of claim 2 , further comprising:
a sensor carried by the wearable interface and configured to be in proximity of the first portion of the first limb of the subject and to output a signal for determining at least a change in blood pressure of the subject at the first limb.
8. The system of claim 2 , wherein the plurality of stretchable electrodes and the plurality of piezoelectrics are configured to contribute to the focused effect on a nerve selected from the list consisting of: a median nerve, a radial nerve, and an ulnar nerve.
9. The system of claim 2 , wherein the wearable interface is configured to at least partially encircle a leg of the subject.
10. The system of claim 2 , wherein at least one of the plurality of stretchable electrodes comprises a hydrogel.