Blood glucose sensing system
    14.
    发明授权

    公开(公告)号:US12178572B1

    公开(公告)日:2024-12-31

    申请号:US18428921

    申请日:2024-01-31

    Abstract: A blood glucose sensing system includes a plurality of physiological sensors. The system can estimate blood glucose based on discrete invasive blood glucose estimates from a blood sample, discrete noninvasive blood glucose estimates derived from optical sensors, and continuously-calculated blood glucose estimates derived from a nonlinear state-space model of glucose and insulin reactions within a human body. The state-space model has user-entered values corresponding to their insulin and meal intake. The user's blood glucose is estimated from a combination of the discrete invasive blood glucose estimates, the discrete noninvasive blood glucose estimates and the continuously-calculated blood glucose estimate.

    PATIENT MONITOR PLACEMENT INDICATOR

    公开(公告)号:US20240407726A1

    公开(公告)日:2024-12-12

    申请号:US18750508

    申请日:2024-06-21

    Abstract: A monitoring device for measuring one or more physiological parameters of a medical patient can include a finger clip sensor connected to a monitor. A placement indicator helps the patient to properly position the sensor. The monitor can display a message alerting the patient to reposition the sensor. The device can delay measurement until the sensor is properly positioned.

    AUDITORY HEALTH MONITORING SYSTEM WITH AURICULAR DEVICE AND PHYSIOLOGICAL SENSOR

    公开(公告)号:US20240404549A1

    公开(公告)日:2024-12-05

    申请号:US18677802

    申请日:2024-05-29

    Abstract: A system for monitoring auditory health of a user can include an auricular device that can comprise a microphone configured to generate OAE audio data responsive to detecting one or more otoacoustic emissions originating from the inner ear of the user. One or more hardware processors associated with the auricular device can access the OAE audio data from the microphone; access physiological data of the user originating from a physiological sensor; determine a feature of the physiological data in a time-domain, the feature comprising a value of the physiological data exceeding a threshold; adjust a portion of the OAE audio data based on the feature of the physiological data, the portion of the OAE audio data corresponding to the feature of the physiological data in the time-domain; and determine one or more physiological characteristics of the user based on the OAE audio data.

    NOSE SENSOR
    18.
    发明申请

    公开(公告)号:US20240398344A1

    公开(公告)日:2024-12-05

    申请号:US18654562

    申请日:2024-05-03

    Abstract: A patient monitor can noninvasively measure a physiological parameter using sensor data from a nose sensor configured to be secured to a nose of the patient. The nose sensor can include an emitter and a detector. The detector is configured to generate a signal when detecting light attenuated by the nose tissue of the patient. An output measurement of the physiological parameter can be determined based on the signals generated by the detector. The nose sensor can include an inner prong and an outer prong to assist the nose sensor in securing to a patient's nose. The detector can be coupled to an inner post of the inner prong and can be configured to secure to an interior or exterior portion of the patient's nose.

    INDUCTION CHARGER
    19.
    发明申请

    公开(公告)号:US20240380246A1

    公开(公告)日:2024-11-14

    申请号:US18660017

    申请日:2024-05-09

    Abstract: Various implementations of chargers are provided herein for inductively charging an electronic device. In some implementations, the charger includes: a housing having an interior and a charging region configured to receive a portion of the electronic device; a substrate positioned within the interior; a cable configured to connect to a power source to provide energy to the charger; and an inductor member positioned within the interior. The inductor member receives electrical current from the cable and generates a magnetic field. The magnetic field induces electrical current in the electronic device when the portion of the electronic device is positioned at the charging region. The charger further includes a biasing member arranged within the interior and configured to apply a biasing force to the inductor member such that the inductor member is pressed against a portion of an interior surface of the housing at said charging region.

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