A61N1/0484

Systems and methods for controlling blood pressure

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.

Method for using mask-type beauty instrument

A method for using a mask-type beauty instrument is provided. The method comprises providing a mask-type beauty instrument comprising a flexible mask and a controller, applying the flexible mask of on a user's face, and turning on the controller and selecting a function button on the controller, inputting a current to a plurality of functional layers in the flexible mask, and stimulating face skin with the current.

NERVE STIMULATION
20220362570 · 2022-11-17 ·

A device and method for providing mechanical ventilation of a user is described. In an embodiment the device comprises at least two metallic coils, each coil configured to be placed adjacent to a phrenic nerve of the user; and a stimulation unit for providing an electric current to the metallic coils, and wherein the current stimulates the phrenic nerve to induce tetanic contractions of a diaphragm muscle of the user to regulate the user's breathing. This provides a ventilation whilst reducing the rehabilitation time post ventilation for a user due to lower muscle wasting of the diaphragm.

Systems, devices and methods for galvanic vestibular stimulation using a modulated version of a generated electrical signal

A method of neurostimulation may include delivering an electrical signal to a plurality of electrodes connected to a patient. The electrical signal may include an amplitude and a carrier frequency. The method may include modulating the electrical signal based on an audio waveform. In some embodiments, the modulating may include modulating at least one of the amplitude and the carrier frequency based on the audio waveform to modulate the electrical signal.

DETECTING WALKING IN A WEARABLE CARDIOVERTER DEFBRILLATOR SYSTEM

A wearable medical includes a walking detector module with a motion sensor that is configured to detect when the patient is walking or running. In embodiments, a parameter (referred to herein as a “Bouncy” parameter) is determined from Y-axis acceleration measurements. In some embodiments, the Bouncy parameter is a measurement of the AC component of the Y-axis accelerometer signal. This detection can be used by the medical device to determine how and/or whether to provide treatment to the patient wearing the medical device. For example, when used in a WCD, the walking detector can prevent “false alarms” because a walking patient is generally conscious and not in need of a shock.

GARMENT FOR INTERFACING A MEDICAL DEVICE WITH AN IMPLANT
20220361606 · 2022-11-17 ·

The disclosure relates to garments for holding a medical device and interfacing same with an implant or a second device disposed on or within a body of a user so as to align and enable communication therebetween.

Patient-worn energy delivery apparatus

A patient-worn arrhythmia monitoring and treatment device includes a pair of therapy electrodes and at least one pair of sensing electrodes disposed proximate to the skin and configured to continually sense at least one ECG signal of the patient over an extended period of time. The device includes a therapy delivery circuit coupled to the pair of therapy electrodes and configured to deliver one or more therapeutic pulses. A controller coupled to therapy delivery circuit is configured to analyze the at least one ECG signal and detect one or more treatable arrhythmias and cause the therapy delivery circuit to deliver the one or more therapeutic pulses to the patient. At least one of the one or more therapeutic pulses is formed as a biphasic waveform delivering within 15 percent of 360 J of energy to a patient body having a transthoracic impedance from about 20 to about 200 ohms.

Remote pain management through electrical stimulation of meridian body lines
11497909 · 2022-11-15 ·

Aspects of the invention include a computer-implemented method requiring loading, via a processor, a meridian tool into an electrical device having an input screen. The method causes, via the processor, the meridian tool to display a human body image on the input screen. The method receives, via the processor, input signals from the input screen to indicate pain points on the human body image and displays, via the processor, a pain level input display on the input screen. The method receives, via the processor, pain level input from the pain level input display screen and causes, via the processor, the electrical device to provide controlling electrical pulses to a meridian acupuncture sleeve, wherein the controlling electrical pulses controls the application of current being applied to electrical pads within the meridian acupuncture sleeve to provide pain relief for the pain points on the human body.

AUTOMATED WEARABLE BELT CARDIAC DEFIBRILLATOR
20220355122 · 2022-11-10 ·

An automated wearable belt cardiac defibrillator (BCD) for wearing by a subject, comprising: at least two patches adapted for adhering to the subject each comprising a defibrillation electrode and an ECG sensor; and a BCD controller connected to each of the patches, wherein the patches comprise an adhesive adapted for long-term adhering of the patches to the subject, wherein the adhesive is a biocompatible adhesive, wherein the patches and adhesive are adapted for movement of the subject while the patches are adhered to the subject, wherein the patches are replaceable, wherein the controller is housed in a belt for wearing by the subject, wherein the belt is adapted for being flexible, wherein the adaptation for being flexible comprises a plurality of compartments for housing components of the controller, wherein a method for usage of the BCD comprises: following completion of an operational period, positioning of the patches to alternative locations on the subject wherein each of the alternate locations represents an alternate shock vector.

VIBRATORY NEUROMODULATION
20220355097 · 2022-11-10 ·

The disclosure provides systems and methods for neuromodulation using a housing that at least partially contains a stimulator assembly, wherein the stimulator assembly is configured to generate vibration by mechanical oscillation and/or using a sound wave; and wherein the vibration generated by the stimulator assembly is configured to therapeutically treat the subject by stimulating one or more nerves when the housing is placed in proximity to or on a skin surface of a subject.