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Artifact reduction in photoplethysmography

机译:光体积描记器中的伪像减少

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Motion artifact reduction in photoplethysmography, and therefore by implication in pulse oximetry, is achieved with a novel nonlinear methodology. The physical origins of the photoplethysmographic signals are explored in relation to a nonlinear measure of the observed intensity fluctuations. It is demonstrated that the nonlinearity renormalizes the received pulsations with optical information in a manner that aids physical interpretation. A heuristic physical model for the motion artifact is introduced and experimentally justified, with an inversion for artifact reduction being simplified by the nonlinearity. A practical implementation technique is discussed with emphasis placed on the resultant resealing of the static and the dynamic portions of the signals. It is noted that this implementation also has the desirable effect of reducing any residual ambient artifact. The scope and power of this methodology is investigated with the presentation of results from a practical electronic system. (C) 1998 Optical Society of America OCIS codes: 070.6020, 100.0100. [References: 28]
机译:用一种新型的非线性方法可以实现光电容积描记术中运动假象的减少,因此可以通过脉搏血氧饱和度测定来实现。关于体积强度波动的非线性测量,探讨了光电容积描记信号的物理起源。证明了非线性以有助于物理解释的方式用光学信息对接收到的脉动进行了归一化。引入了运动伪影的启发式物理模型并进行了实验证明,非线性的简化简化了伪影减少的反演。讨论了一种实际的实现技术,重点放在信号的静态和动态部分的重新密封上。注意,该实施方式还具有减少任何残留的环境伪像的期望效果。通过介绍实际电子系统的结果来研究此方法的范围和功能。 (C)1998美国光学学会OCIS编码:070.6020,100.0100。 [参考:28]

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