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Effect of deep breath on the correlation between the wrist and finger photoplethysmograms

机译:深呼吸对手指和手指光学仪表之间的相关性的影响

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In this paper, a special probe is designed using an array of photodiodes and a 960 nm LED for recording the wrist photoplethysmogram (PPG). The design is based on Monte-Carlo simulation of light propagation in tissues. Two series of experiments were carried-out: normal breathing and deep breathing. In both experiments, finger and wrist PPG were simultaneously recorded from the index finger. In the first series of experiment, signals from 9 subjects were recorded and the correlation coefficient for the raw signals (AC+DC), the AC and DC components of wrist and finger PPG were (62.5% ± 12.1%),(91.2% ± 6.9%) and (61% ± 13.4%) respectively. In the second series of experiment (deep breathing), signals from 6 subjects were recorded and the correlation coefficient for the raw signals(AC+DC), the AC and DC components were (89.7% ± 5.9%),(93.7% ± 3.3%) and (89.9% ± 5.9%) respectively. These results show that under normal breathing conditions, only the AC components of the PPG signals are highly correlated. When respiration becomes the dominant effect, both AC and DC parts become highly correlated.
机译:在本文中,使用光电二极管阵列和960nm LED设计了一种特殊探头,用于记录手腕光学读数(PPG)。该设计基于组织中的蒙特卡罗浅展示。两系列实验进行了:正常呼吸和深呼吸。在两个实验中,从食指同时记录手指和腕部PPG。在第一系列实验中,记录来自9个受试者的信号,并且原始信号(AC + DC),手腕和手指PPG的AC和DC分量的相关系数(62.5%±12.1%)(91.2%± 6.9%)分别和(61%±13.4%)。在第二系列实验(深呼吸)中,记录了来自6个受试者的信号,并且原始信号(AC + DC),AC和DC组分的相关系数(89.7%±5.9%),(93.7%±3.3 %)分别和(89.9%±5.9%)。这些结果表明,在正常的呼吸条件下,仅PPG信号的AC组分高度相关。当呼吸成为主导效果时,AC和DC部件都变得高度相关。

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