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Heart rate estimation in photoplethysmogram signals using nonlinear model-based preprocessing

机译:使用基于非线性模型的预处理估计光体积描记图信号中的心率

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We propose a frequency domain algorithm for heart rate estimation from photoplethysmographic signals (PPG) recorded during intense physical activity. Starting from the Beer-Lambert law we model the effect of movement artifacts on the PPG signal as an amplitude modulation. Using tri-axis accelerometer recordings to demodulate the PPG signal, we are able to extract the heart rate even when motion artifacts are within the frequency band of interest. The average heart rate error using two-channel PPG recordings from 12 subjects was 1:6 BPM with a standard deviation of 3 BPM.
机译:我们提出了一种频域算法,用于根据剧烈运动期间记录的光电容积描记图信号(PPG)估算心率。从比尔-朗伯定律开始,我们将运动伪影对PPG信号的影响建模为幅度调制。使用三轴加速度计记录来解调PPG信号,即使运动伪像在感兴趣的频带内,我们也能够提取心率。使用来自12位受试者的两通道PPG记录的平均心率误差为1:6 BPM,标准偏差为3 BPM。

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