首页> 外文会议>IEEE Engineering in Medicine and Biology Society >Adaptive blood pressure estimation from wearable PPG sensors using peripheral artery pulse wave velocity measurements and multi-channel blind identification of local arterial dynamics.
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Adaptive blood pressure estimation from wearable PPG sensors using peripheral artery pulse wave velocity measurements and multi-channel blind identification of local arterial dynamics.

机译:使用外围动脉脉冲波速度测量的可穿戴PPG传感器的自适应血压估计和局部动力学的多通道盲识别。

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A method for estimating pulse wave velocity (PWV) using circulatory waveform signals derived from multiple photoplethysmograph (PPG) sensors is described. The method employs two wearable in-line PPG sensors placed at a known distance from one another at the ulnar and digital artery. A technique for calibrating the measured pulse wave velocity to arterial blood pressure using hydrostatic pressure variation is presented. Additionally, a framework is described for estimating local arterial dynamics using PPG waveforms and multi-channel blind system ID. Initial results implementing the method on data derived from a human subject at different arterial pressures is presented. Results show that the method is capable of measuring the changes in arterial PWV that result from fluctuations in mean arterial pressure
机译:描述了使用来自多个光电容焦仪(PPG)传感器的循环波形信号估计脉搏波速度(PWV)的方法。该方法采用两个可穿戴在线PPG传感器,在尺尺和数字动脉处彼此彼此处于已知距离。介绍了使用静压压力变化校准测量脉搏波速度对动脉血压的技术。另外,描述了一种使用PPG波形和多通道盲系统ID估计局部动力学的框架。介绍了在不同动脉压力下衍生自人对象的数据的方法的初始结果。结果表明,该方法能够测量由平均动脉压力波动导致的动脉PWV的变化

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