A61B5/683

Body-attachable biometric signal acquisition device
11523776 · 2022-12-13 · ·

Provided is a body-attachable biometric signal acquisition device. The body-attachable biometric signal acquisition device includes: a main body including a sensor acquiring a biometric signal in a state of closely adhering to a surface of a body; and a first fixing portion winding the body to fix the main body to the body, wherein the first fixing portion includes a first strap winding the body, the first strap includes a framework formed of an elastic material, and when the first strap winds the body to fasten the main body and the first fixing portion to the body, a pressure applied by the sensor to the surface of the body is generated by an elastic restoring moment generated by the framework, and a gap is present between a portion of an outer surface of the first strap, and the surface of the body, the portion being positioned between the framework and the surface of the body. An air cushion is provided to prevent wobbling of the main body caused by an excessive space formed due to body size variation.

Systems for radio wave based health monitoring that include an alignment feature
11523777 · 2022-12-13 · ·

A device for monitoring a health parameter of a person is disclosed. The device includes a device body, a radio frequency (RF) front-end connected to the device body and including a semiconductor substrate and an antenna array including at least one transmit antenna configured to transmit radio waves below the skin surface of a person and a two-dimensional array of receive antennas configured to receive radio waves, the received radio waves including a reflected portion of the transmitted radio waves, wherein the semiconductor substrate includes circuits configured to generate signals in response to the received radio waves, and an alignment feature integrated into the device body and configured to align the antenna array with an object.

Contextual annotation of medical data

A method of annotating medical data may involve receiving, by a first device, medical data from one or more sensors of one or more medical devices and non-medical event data from one or more non-medical devices. The non-medical event data may indicate a non-medical device type. The method may involve annotating the medical data according to the non-medical event data, to produce annotated medical data, and transmitting the annotated medical data to a second device.

OPTICAL SENSING MODULE

An optical sensing module suitable for wearable devices, the optical sensing module comprising: a silicon or silicon nitride transmitter photonic integrated circuit (PIC), the transmitter PIC comprising: a plurality of lasers, each laser of the plurality of lasers operating at a wavelength that is different from the wavelength of the others; an optical manipulation region, the optical manipulation region comprising one or more of: an optical modulator, optical multiplexer (MUX); and additional optical manipulation elements; and one or more optical outputs for light originating from the plurality of lasers.

Systems and methods for power management in analyte sensor system

An analyte sensor system may include a first communication circuit configured to transmit a wireless signal in a first communication mode and a second communication mode, and a processor, wherein the processor determines whether a first condition is satisfied, the first condition relating to the sensor signal or to communication by the first communication circuit, and shifts the system to a second communication mode responsive to the first condition being satisfied.

Method and means to measure heart rate with fitbit devices—2
11504016 · 2022-11-22 ·

A device and a means to measure the periodic change in blood supply volume, from which the heart rate can be inferred. The device is useful for equipment intended to track the physical activity of animals, including humans, particularly if they are engaging in some sort of physical activity designed to improve the physical performance of the animal. One possible application is to improve the accuracy of the fitbit devices used by dark skinned humans.

Joint Sensing
20220361817 · 2022-11-17 ·

A method of calibrating a pair of body mounted sensors, the method comprising the steps of: (a) in a baseline position of a joint to be measured, determining a first offset between a measured joint angle and an angle between pair of sensors, one mounted on each side of the joint to be measured, so as to calibrate the sensors; (b) after at least one of the sensors has been removed and reapplied, placing the joint back into the baseline position such that the sensors are in a second configuration relative to each other; and (c) determining a second offset between the measured knee angle and an angle between the pair of sensors in the second configuration in order to recalibrate the sensors such that, in each of the first and second configurations, the same joint angle for the baseline position is reported.

STRETCHABLE NANO-MESH BIOELECTRODE AND METHOD OF FABRICATING THE SAME
20220364270 · 2022-11-17 ·

The present invention relates to a stretchable nano-mesh bioelectrode having excellent air permeability and durability. Specifically, the stretchable nano-mesh bioelectrode includes a nanofiber elastic mesh sheet including polymer nanofibers formed by electrospinning; and a metal nanowire network having a portion impregnated onto the nanofiber elastic mesh sheet.

PORTABLE ELECTROCARDIOGRAPHIC DEVICE
20220346654 · 2022-11-03 ·

A portable electrocardiographic device includes: an electrode unit configured to detect an electrocardiographic waveform; and a control unit configured to record, in a storage unit, the electrocardiographic waveform detected by the electrode unit. The electrode unit includes a pair of measurement electrodes for measuring the electrocardiographic waveform, and an earth electrode for detecting a reference potential for a change in a potential of a body, and the earth electrode is disposed in such a manner that a distal end side of a finger of a subject that is a target of the electrocardiographic waveform measurement is brought in contact with the earth electrode, and one of the measurement electrodes is disposed on a proximal end side of the finger of the subject, the distal end side of which is in contact with the earth electrode.

Photoplethysmography device with thermal trapping and/or warming capability and associated methods
11607146 · 2023-03-21 · ·

A photoplethysmography (PPG) device includes an equipment module which includes a photodetector and first and second light emitting diodes (LED's) adapted to emit light of first and second wavelengths, respectively. The PPG device also includes a mask covering the patient facing extremity of the equipment module so that when the device is applied to a patient the mask is situated between the patient and the patient facing extremity. A processor is adapted to control drive current and/or operating time of the second LED to achieve an elevated localized body tissue temperature of a patient to which the PPG device is applied.