Patent classifications
A61B5/369
Vehicle controller and vehicle control system
A vehicle controller includes a processor that switches, when detecting a physical abnormality of an occupant of an own vehicle based on physical information of the occupant, the own vehicle to an emergency mode in which the own vehicle automatically travels to a destination. The processor receives, when the own vehicle is switched to the emergency mode, other vehicle information from another vehicle switched to the emergency mode. The other vehicle information includes information on a physical abnormality of an occupant of the other vehicle. Based on the other vehicle information and own vehicle information including information on the physical abnormality of the occupant of the own vehicle, the processor sets the order of priority to determine which of the own vehicle or the other vehicle is allowed to travel preferentially, and sends, based on the order of priority, a medical aid request to an information processor.
Vehicle controller and vehicle control system
A vehicle controller includes a processor that switches, when detecting a physical abnormality of an occupant of an own vehicle based on physical information of the occupant, the own vehicle to an emergency mode in which the own vehicle automatically travels to a destination. The processor receives, when the own vehicle is switched to the emergency mode, other vehicle information from another vehicle switched to the emergency mode. The other vehicle information includes information on a physical abnormality of an occupant of the other vehicle. Based on the other vehicle information and own vehicle information including information on the physical abnormality of the occupant of the own vehicle, the processor sets the order of priority to determine which of the own vehicle or the other vehicle is allowed to travel preferentially, and sends, based on the order of priority, a medical aid request to an information processor.
Vascular assessment device
A vascular assessment device includes an antenna unit and a fabric unit. The antenna unit includes a substrate, a transmitting antenna and a receiving antenna spaced apart disposed on the substrate, and a circuit module disposed on the substrate. The circuit module cooperates with the transmitting antenna to emit a carrier radio wave toward a fistula of a subject, and receives, via the receiving antenna, a return wave signal formed through reflection of the carrier radio wave. The fabric unit is sleeved on the antenna unit, and includes an isolating layer adapted to be disposed between the transmitting antenna and the skin above the fistula. The fabric unit has a dielectric constant not greater than 3.
Method for determining degree of response to physical activity
The present invention discloses a method for determining a degree of response to a physical activity. Acquire a physical activity signal measured by a sensing unit in the physical activity. Determine first data of a first physical activity feature set based on the physical activity signal. Determine a recognition of the degree of response to the physical activity based on the first data of the first physical activity feature set by a mathematical model describing a relationship between the first physical activity feature set and the degree of response to a physical activity. A portion of a first mechanism of the mathematical model adopts at least one portion of a second mechanism of a first neural network model associated with the second physical activity feature set.
Medical monitoring hub
The present disclosure includes a medical monitoring hub as the center of monitoring for a monitored patient. The hub includes configurable medical ports and serial ports for communicating with other medical devices in the patient's proximity. Moreover, the hub communicates with a portable patient monitor. The monitor, when docked with the hub provides display graphics different from when undocked, the display graphics including anatomical information. The hub assembles the often vast amount of electronic medical data, associates it with the monitored patient, and in some embodiments, communicates the data to the patient's medical records.
Medical monitoring hub
The present disclosure includes a medical monitoring hub as the center of monitoring for a monitored patient. The hub includes configurable medical ports and serial ports for communicating with other medical devices in the patient's proximity. Moreover, the hub communicates with a portable patient monitor. The monitor, when docked with the hub provides display graphics different from when undocked, the display graphics including anatomical information. The hub assembles the often vast amount of electronic medical data, associates it with the monitored patient, and in some embodiments, communicates the data to the patient's medical records.
SYSTEMS AND METHODS FOR PROVIDING ALPHA BURST BRAIN STIMULATION
A method of treating a subject that includes measuring at least one alpha burst associated with the subject's brain, determining at least one intrinsic frequency of the subject's brain based on the at least one measured alpha burst, selecting a stimulation frequency based on the at least one intrinsic frequency of the subject's brain, and providing a stimulation treatment at the stimulation frequency close to a head of the subject to influence at least one alpha burst parameter of the subject's brain.
SYSTEMS AND METHODS FOR PROVIDING ALPHA BURST BRAIN STIMULATION
A method of treating a subject that includes measuring at least one alpha burst associated with the subject's brain, determining at least one intrinsic frequency of the subject's brain based on the at least one measured alpha burst, selecting a stimulation frequency based on the at least one intrinsic frequency of the subject's brain, and providing a stimulation treatment at the stimulation frequency close to a head of the subject to influence at least one alpha burst parameter of the subject's brain.
VR/AR PHOBIA TRAINING IN A CONTROLLED ENVIRONMENT WITH STRESS LEVEL SENSORS AND MANAGEMENT THROUGH SCENARIOS CONTROL
Systems, devices, methods, or computer-readable instructions that provide an AR or VR video stream including a sequence of frames that simulate a phobia, and for each frame or subset of frames, monitoring and storing one or more biometrics of a user.
VR/AR PHOBIA TRAINING IN A CONTROLLED ENVIRONMENT WITH STRESS LEVEL SENSORS AND MANAGEMENT THROUGH SCENARIOS CONTROL
Systems, devices, methods, or computer-readable instructions that provide an AR or VR video stream including a sequence of frames that simulate a phobia, and for each frame or subset of frames, monitoring and storing one or more biometrics of a user.