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    • 2. 发明申请
    • SYSTEM AND METHOD FOR OBTAINING BLOOD PRESSURE MEASUREMENT
    • 用于获得血压测量的系统和方法
    • WO2017052822A1
    • 2017-03-30
    • PCT/US2016/046209
    • 2016-08-09
    • QUALCOMM INCORPORATED
    • TCHERTKOV, IgorPOLIAKOV, Evgeni YurijGRUHLKE, Russell WayneMARTIN, Russel AllynGOUSEV, Evgeni PetrovichSEZAN, Muhammed Ibrahim
    • A61B5/021A61B5/024A61B5/00
    • A61B5/02427A61B5/02125A61B5/681A61B5/6826
    • Methods, systems, computer-readable media, and apparatuses for obtaining blood pressure measurements are presented. The blood pressure measurements may be obtained by determining a pulse-transit time (PTT) as a function of a photoplethysmography (PPG) measurement and electrocardiogram (ECG) measurement. A mobile device includes outer body sized to be portable for a user of the mobile device. The mobile device also includes a plurality of light emitting components distributed along at least one portion of the mobile device and a plurality of light collecting components configured to measure reflected light from the plurality of light emitting components reflected off of blood vessels within the user. The light emitting and light collecting components are distributed along the at least one portion of the mobile device. The mobile device may also include a light guide configured to direct light emitted by the at least one light emitting component toward blood vessels with the user.
    • 给出了用于获得血压测量值的方法,系统,计算机可读介质和设备。 可以通过确定作为光电容积脉搏波(PPG)测量和心电图(ECG)测量的函数的脉冲传播时间(PTT)来获得血压测量结果。 移动设备包括外部主体,其大小适合移动设备的用户的便携式。 移动设备还包括沿着移动设备的至少一部分分布的多个发光组件和配置成测量来自用户内的血管反射的多个发光组件的反射光的多个光收集组件。 发光和光收集部件沿着移动设备的至少一部分分布。 移动设备还可以包括光导,该光导被配置为将由至少一个发光部件发射的光朝向血管引导至用户。
    • 5. 发明申请
    • INTERFACE FOR DISPOSABLE SENSORS
    • 便携式传感器接口
    • WO2015070125A1
    • 2015-05-14
    • PCT/US2014/064757
    • 2014-11-10
    • QUALCOMM INCORPORATED
    • MARTIN, Russel AllynLONDERGAN, Ana RangelovaBLACK, Justin PhelpsHE, RihuiTCHERTKOV, IgorSRIVASTA, Raghu Subramanian
    • G06F13/38
    • G01N21/78G06F13/385Y10T436/144444
    • Techniques described herein enable a mobile multifunction device to detect a disposable sensor card at an interface coupled to the mobile multifunction device, wherein the disposable sensor card is mounted inside an opening in the mobile multifunction device, detect analog information associated with the disposable sensor card, and convert analog information to digital information. Detecting analog information comprises detecting a non-transient change in at least a portion of the disposable sensor card, wherein at least a portion of the first disposable sensor card changes form in response to exposure to one or more stimuli from an environment of the first disposable sensor card. A non-transient change may include one or more of changing color, changing shape, changing chemical composition or changing electrical characteristics. Furthermore, the interface may be configured to receive disposable sensor cards with varying sensing capabilities. Each disposable sensor card may have one or more disposable sensors.
    • 本文描述的技术使得移动多功能设备能够在耦合到移动多功能设备的接口处检测一次性传感器卡,其中一次性传感器卡安装在移动多功能设备的开口内,检测与一次性传感器卡相关联的模拟信息, 并将模拟信息转换为数字信息。 检测模拟信息包括检测一次性传感器卡的至少一部分中的非瞬时变化,其中响应于暴露于来自第一一次性传感器卡的环境的一个或多个刺激的第一一次性传感器卡的至少一部分改变形式 传感器卡。 非瞬时变化可以包括改变颜色,改变形状,改变化学成分或改变电特性中的一种或多种。 此外,接口可以被配置为接收具有变化的感测能力的一次性传感器卡。 每个一次性传感器卡可以具有一个或多个一次性传感器。
    • 8. 发明申请
    • ROBUST HEART RATE ESTIMATION
    • 稳健的心率估计
    • WO2016204905A1
    • 2016-12-22
    • PCT/US2016/032711
    • 2016-05-16
    • QUALCOMM INCORPORATED
    • SAMADANI, RaminPUIG, Carlos ManuelMARTIN, Russel AllynKULIK, Victor
    • A61B5/00A61B5/024
    • A61B5/02427A61B5/02416A61B5/02438A61B5/721A61B5/7221A61B5/7278
    • Disclosed embodiments pertain to the measurement of heart rate in the presence of motion and noise. Spectral peaks in measurements by an optical sensor are compared with spectral peaks obtained from a motion sensor signal measurements, to obtain a fundamental frequency in the optical sensor signal, where the fundamental frequency is associated with a user's heart rate. A first heart rate may be estimated based on the fundamental frequency. A variety of quality metrics may be determined for the first heart rate estimate. A second estimated heart rate may be determined based by processing a frequency domain representation of the optical sensor signal based on a frequency domain representation of the motion sensor signal. One or more of the previously determined quality metrics may be dynamically adjusted based on a comparison of first and second estimated heart rates.
    • 公开的实施例涉及在存在运动和噪声的情况下对心率的测量。 将通过光学传感器测量的光谱峰值与从运动传感器信号测量获得的光谱峰值进行比较,以获得基本频率与用户心率相关联的光学传感器信号中的基频。 可以基于基本频率来估计第一心率。 可以针对第一心率估计确定各种质量度量。 可以通过基于运动传感器信号的频域表示处理光学传感器信号的频域表示来确定第二估计心率。 可以基于第一和第二估计心率的比较来动态地调整先前确定的质量度量中的一个或多个。