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    • 7. 发明申请
    • HEAT-FLOW SENSOR
    • 热流量传感器
    • WO2017108964A1
    • 2017-06-29
    • PCT/EP2016/082200
    • 2016-12-21
    • KONINKLIJKE PHILIPS N.V.
    • BONGERS, Edwin, Gerardus, Johannus, MariaATALLAH, Louis, Nicolas
    • G01K1/16G01K13/00A61B5/01G01K7/42
    • G01K13/002A61B5/002A61B5/01A61B2505/05A61B2562/0271A61B2562/046G01K1/165G01K7/427
    • The invention describes a passive heat-flow sensor (1) comprising a contact face (11) for placement on a subject (8) during a temperature monitoring procedure; and a plurality of combined thermistor arrangements, wherein a combined thermistor arrangement comprises an inner thermistor (S1) arranged at an inner face of the sensor (1); an upper thermistor (S2) arranged at the upper surface of the sensor (1) and arranged relative to the inner thermistor (S1) to measure a vertical heat flow outward from the subject (8); and a lateral thermistor (S3) arranged relative to the inner thermistor (S1) to measure a horizontal heat flow along the contact face (11). The invention further describes a method of measuring the temperature of a subject (8) using a heat-flow sensor (1); and a temperature sensing arrangement (10) for monitoring the temperature of a subject (8) using a heat-flow sensor (1).
    • 本发明描述了一种被动式热流传感器(1),其包括用于在温度监测过程期间放置在对象(8)上的接触面(11);其中, 和多个组合的热敏电阻装置,其中组合的热敏电阻装置包括布置在传感器(1)的内表面处的内部热敏电阻(S1) 一个布置在传感器(1)的上表面并相对于内热敏电阻(S1)布置以测量从对象(8)向外的垂直热流的上热敏电阻(S2); 以及相对于内部热敏电阻(S1)布置的横向热敏电阻(S3),以测量沿着接触面(11)的水平热流。 本发明还描述了一种使用热流量传感器(1)测量对象(8)的温度的方法; 和用于使用热流传感器(1)监测对象(8)的温度的温度感测装置(10)。
    • 9. 发明申请
    • MEDICAL DEVICE USER CACHING
    • 医疗设备用户缓存
    • WO2017087478A1
    • 2017-05-26
    • PCT/US2016/062214
    • 2016-11-16
    • WELCH ALLYN, INC.
    • BROUGH, Stacie L.NYE III, Andrew Brayton
    • G06F21/31H04L9/32
    • G06F21/31A61B5/0002A61B5/002A61B5/02055A61B2560/0266A61B2560/0437G06F12/0875G06F19/00G06F19/3418G06F2212/1052G06F2212/45
    • An example medical device includes a physiological measurement device, a device management engine, a user caching engine, and a login engine. The device management engine is configured to receive data captured by the physiological measurement device. The user caching engine is configured to store cache records associated with users in a user cache. The login engine is configured to receive a user identifier associated with a user and determine whether the user identifier is associated with a cache record stored in the user cache. When determined that the user identifier is associated with a cache record stored in the user cache, the login engine is configured to log the user in. When not determined that the user identifier is associated with an unexpired cache record stored in the user cache, the login engine is configured to prompt the user for a credential.
    • 示例医疗设备包括生理测量设备,设备管理引擎,用户高速缓存引擎以及登录引擎。 设备管理引擎被配置为接收由生理测量设备捕获的数据。 用户缓存引擎被配置为将与用户相关联的缓存记录存储在用户缓存中。 登录引擎被配置为接收与用户相关联的用户标识符并且确定用户标识符是否与存储在用户高速缓存中的高速缓存记录相关联。 当确定用户标识符与存储在用户高速缓存中的高速缓存记录相关联时,登录引擎被配置为登录用户。当未确定用户标识符与存储在用户高速缓存中的未到期高速缓存记录相关联时, 登录引擎被配置为提示用户输入凭证。
    • 10. 发明申请
    • RELIABLE COMMUNICATION ALGORITHM FOR WIRELESS MEDICAL DEVICES AND SENSORS WITHIN MONITORING SYSTEMS
    • 监测系统中无线医疗设备和传感器的可靠通信算法
    • WO2017072100A1
    • 2017-05-04
    • PCT/EP2016/075637
    • 2016-10-25
    • KONINKLIJKE PHILIPS N.V.
    • HARROD IV, John, PriceROSNOV, Brian
    • H04W24/08H04L12/26A61B5/00
    • H04W24/08A61B5/002A61B2560/0271A61B2560/0276H04L43/0882H04L43/16
    • A wireless medical device (10) includes at least one physiological sensor (12) configured to measure a vital sign or a physiological parameter data and a wireless transceiver (24). At least one processor (22, 24, 34) is programmed to: construct a data stream comprising a sequence of data packets, the data packets containing physiological parameter data acquired by the at least one physiological sensor; operate the wireless transceiver to transmit the data stream to an associated monitoring station (14) via a wireless communication channel (18); receive a gap report from the associated monitoring station identifying at least one missing data packet of the data stream that was not received at the associated monitoring station; and re-transmit the at least one missing data packet identified by the gap report to the associated monitoring station via the wireless communication channel.
    • 无线医疗设备(10)包括被配置为测量生命体征或生理参数数据的至少一个生理传感器(12)和无线收发器(24)。 至少一个处理器(22,24,34)被编程为:构建包括数据分组序列的数据流,所述数据分组包含由所述至少一个生理传感器获取的生理参数数据; 操作无线收发器以经由无线通信信道(18)将数据流发送到相关联的监控站(14); 接收来自所述相关联的监视台的间隙报告,所述间隙报告标识在所述相关联的监视台处未接收到的所述数据流的至少一个丢失的数据包; 并且通过无线通信信道将由间隙报告识别的至少一个丢失的数据分组重新发送到相关的监测站。