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    • 4. 发明授权
    • Biofeedback for program guidance in pulmonary rehabilitation
    • 肺康复方案指导生物反馈
    • US09465893B2
    • 2016-10-11
    • US13518075
    • 2010-11-17
    • Amy Oi Mee CheungMaryam Atakhorrami
    • Amy Oi Mee CheungMaryam Atakhorrami
    • G06F17/00G06F17/40G06F19/00
    • G06F17/40G06F19/00G06F19/3481G16H40/63
    • A system (200) for providing an exercise training plan for a patient is provided. The system includes a sensor (202, 204, 206, 208, 210, 212), and a processor (214) operatively connected to the at least one sensor. The sensor measures physiological parameter of the patient. The processor is configured to: a) receive health information data representative of patient information and patient symptoms; b) receive physiological data from the at least one sensor; c) devise the exercise training plan for the patient based on the health information data and the physiological data; d) monitor the physiological data, during the exercise training of the patient to determine if the physiological data is within a predetermined range; and e) modify the exercise training plan for the patient if the physiological data is outside the predetermined range.
    • 提供了一种用于为患者提供运动训练计划的系统(200)。 该系统包括传感器(202,204,206,208,210,212)和可操作地连接到该至少一个传感器的处理器(214)。 传感器测量患者的生理参数。 处理器被配置为:a)接收代表患者信息和患者症状的健康信息数据; b)从所述至少一个传感器接收生理数据; c)根据健康信息数据和生理数据设计患者的运动训练计划; d)在患者的运动训练期间监测生理数据,以确定生理数据是否在预定范围内; 以及e)如果生理数据在预定范围之外,则修改患者的运动训练计划。
    • 5. 发明申请
    • BIOFEEDBACK FOR PROGRAM GUIDANCE IN PULMONARY REHABILITATION
    • 肺功能康复计划指南生物反馈
    • US20130116807A1
    • 2013-05-09
    • US13518075
    • 2010-11-17
    • Amy Oi Mee CheungMaryam Atakhorrami
    • Amy Oi Mee CheungMaryam Atakhorrami
    • G06F17/40
    • G06F17/40G06F19/00G06F19/3481G16H40/63
    • A system (200) for providing an exercise training plan for a patient is provided. The system includes a sensor (202, 204, 206, 208, 210, 212), and a processor (214) operatively connected to the at least one sensor. The sensor measures physiological parameter of the patient. The processor is configured to: a) receive health information data representative of patient information and patient symptoms; b) receive physiological data from the at least one sensor; c) devise the exercise training plan for the patient based on the health information data and the physiological data; d) monitor the physiological data, during the exercise training of the patient to determine if the physiological data is within a predetermined range; and e) modify the exercise training plan for the patient if the physiological data is outside the predetermined range.
    • 提供了一种用于为患者提供运动训练计划的系统(200)。 该系统包括传感器(202,204,206,208,210,212)和可操作地连接到该至少一个传感器的处理器(214)。 传感器测量患者的生理参数。 处理器被配置为:a)接收代表患者信息和患者症状的健康信息数据; b)从所述至少一个传感器接收生理数据; c)根据健康信息数据和生理数据设计患者的运动训练计划; d)在患者的运动训练期间监测生理数据,以确定生理数据是否在预定范围内; 以及e)如果生理数据在预定范围之外,则修改患者的运动训练计划。
    • 10. 发明授权
    • Zero heat flux sensor and method of use
    • 零热通量传感器及使用方法
    • US08945020B2
    • 2015-02-03
    • US13144701
    • 2009-12-23
    • Amy Oi Mee CheungJasper Klewer
    • Amy Oi Mee CheungJasper Klewer
    • A61B5/00G01K1/14G01K1/16G01K7/21G01K13/00
    • G01K1/14G01K1/16G01K1/165G01K7/21G01K13/002
    • When measuring core body temperature in a patient, a curved sensor (10) is provide that has a predefined radius of curvature to fit comfortably and closely to a patient's forehead. The sensor (10) has at least one releasable securing strip (e.g., Velcro™) that couples the sensor (10) to a headband (14), as well as an adhesive strip (16) that is positioned along one edge of an interior surface of the sensor (10) and couples the sensor (10) to the patient's skin. The adhesive strip acts as a hinge that facilitates inspection of the skin beneath the sensor without complete removal of the sensor, and the headband and curvature of the sensor provide a snug fit of the interior surface of the sensor against the patient's skin. Additionally, the sensor may be a zero heat flux sensor (34) with a heater (32) placed on one side thereof and a thermister (36) placed on an opposite side thereof, between the heat flux sensor (34) and a patient's skin. The heater is adjusted until heat flux through the heat flux sensor is zero, at which point the patient's skin surface temperature (as detected by the thermistor) is recorded as a core body temperature. Moreover, the thermister (34, 72) may be quickly calibrated by linearizing a temperature vs. resistance curve therefore, and shifting the linearized curve to a predetermined 15 reference curve.
    • 当测量患者体内的体温时,提供弯曲的传感器(10),其具有预定的曲率半径以适合和紧密地配合患者的前额。 传感器(10)具有将传感器(10)连接到头带(14)的至少一个可释放的固定条(例如,Velcro TM)以及沿内部的一个边缘定位的粘合带(16) 传感器(10)的表面并将传感器(10)耦合到患者的皮肤上。 粘合带作为铰链,其有助于检查传感器下方的皮肤,而不会完全移除传感器,并且传感器的头带和曲率提供传感器内表面贴合患者皮肤的贴合配合。 另外,传感器可以是零热通量传感器(34),其一侧放置有加热器(32),并且在热通量传感器(34)和患者皮肤之间放置热敏电阻(36) 。 调节加热器,直到通过热通量传感器的热通量为零,此时患者的皮肤表面温度(由热敏电阻检测)记录为核心体温。 此外,可以通过线性化温度与电阻曲线来快速校准热敏电阻(34,72),并将线性化曲线移动到预定的15个参考曲线。