A61B5/6889

Communication Terminal and Position Detection System

A communication terminal includes a memory in which identification information associated with a user is stored, a controller that carries out authentication of the user, and a communication interface that transmits a signal including the identification information. When user authentication is successful, the controller sets the communication terminal to a first state in which the signal is transmitted to an external apparatus, and when user authentication is not successful, the controller sets the communication terminal to a second state in which the signal is not transmitted to the external apparatus.

Information and passive biometric systems and methods

Information and passive biometric capture systems and methods. The information system includes a housing having a cavity configured to receive tangible items therein. A transparent, touch-sensitive display device is positioned over the cavity and configured such that in response to pixels of the display being black, the tangible items behind the black pixels are visible through the transparent display. A controller is programmed to receive from a remote server an alarm signal, and in response thereto, cause the display to change its state to indicate an alarm condition on the display. In response to receiving an input from the touch-sensitive display, a keypad is displayed, and inputs thereon are communicated to the remote server. The display can also display personal photographs stored in the memory device. A passive biometric capture system includes a chair with pressure-sensitive sensors embedded within areas contacted by a person sitting in the chair to form a unique passive biometric signature for each person and thereby differentiate among different people who sit in the same chair.

MEASURING DEVICE
20230329641 · 2023-10-19 · ·

Provided is a measuring device that can ensure a level of a measurement signal while noise derived from the body movement of a subject is curbed.

A measuring device according to the embodiments includes a first fixing body, a sensor fixing body configured to fix, a sensor for detecting a biological signal, and the sensor, in which the first fixing body and the sensor fixing body have separate structures.

Smart tunnel having regular quarantine and disinfection function for preventing proliferation of infectious disease

The present disclosure relates to a smart tunnel having a tunnel structure having a quarantine section and a disinfection section, which is capable of regularly performing a quarantine function for determining whether an infectious disease is introduced and a disinfection function for preventing spread of an infectious disease.

Ceiling fan for establishing a system for local control of a space

A ceiling fan for a space is provided. The ceiling fan can include a first communication interface configured to provide communications between the ceiling fan and a plurality of peripheral devices over a local network. The ceiling fan can further include a second communication interface configured to provide communications between the ceiling fan and an external network. The ceiling fan can further include one or more control devices configured to provide one or more control signals to control operation of one or more of the peripheral devices.

Patient data collection system and method

Various systems and methods for collecting patient data are discussed herein. According to some systems and methods, a timer may be started, and a blood pressure data collection system is actuated to obtain a blood pressure measurement of a patient upon the expiration of the timer. The timer may be incorporated into a patient data collection system or method to ensure the patient is relaxed and calm prior to taking a blood pressure measurement. An event may be sensed by an environmental sensor system and the timer may be started in response to sensing the event. A clinician leaving a room where the patient is disposed is one example of an event. An interruption may be sensed by the environmental sensor system and the timer may be terminated in response to sensing the interruption. The clinician entering the room where the patient is disposed in one example of an interruption.

Method and apparatus for patient monitoring
11751820 · 2023-09-12 ·

The system provides a method and apparatus for patient monitoring. In one embodiment, the system comprises beacons located in the patient environment. The beacons may be part of the Medical Internet of Things (MIOT). The patient has a medical wearable that includes fall detection and non-clinical medical monitoring within a geo-fencing perimeter to assure patient safety. The caregivers wear monitoring badges that identify the location, proximity, time management and resources spent for a patient. A central hub base station in the home coordinates and collects the information from the beacons, badges, and medical wearable to deliver information (e.g., via the cloud) for the management of the patient and the caregiver.

Contactless Patient Monitoring System

A contactless patient monitoring system is provided and includes a central processing unit, a sensor array, and a web-based central interface. The sensor array is positioned on a ceiling of a room and establishes a link with the central processing unit. The sensor array includes a plurality of sensors, which when triggered, sends data to the central processing unit for analyzing the data. The central processing unit issues an actionable event depending on which sensor of the plurality of sensors in triggered. The web-based central interface receives the actionable event and displays a report on a user dashboard.

CONTACTLESS COUGH DETECTION AND ATTRIBUTION

Methods, devices, and systems for contactless cough detection and attribution are presented herein. Audio data may be received using a microphone. A cough may be identified as having occurred based on the received audio data. Radar data may be received indicative of reflected radio waves from a radar sensor. A state analysis process may be performed using the received radar data. The detected cough may be attributed to a particular user based at least in part on the state analysis process performed using the radar data.

Event prediction system, sensor signal processing system, event prediction method, and non-transitory storage medium

An event prediction system according to an aspect includes an acquisition unit and a symptom detection unit. The acquisition unit acquires body movement data about a subject's body movement from a measuring device that outputs the body movement data. The symptom detection unit makes, based on a subset, acquired during a past reference period, of the body movement data, a decision about whether or not there are any symptoms of an onset of a particular event related to the subject.