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Theory of Dynamic Pulsatile Spectroscopy for photoplethysmographic signals analysis

机译:动态脉搏波光谱理论用于光电容积描记信号分析

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Photoplethysmography (PPG) is a technique that uses light to non-invasively obtain a volumetric measurement of an organ with each cardiac cycle. Pulse Oximetry (PO) is an empirical technique which allows the arterial blood oxygen saturation (SpO2) evaluation from the PPG signals. There have been many reports in the literature suggesting that other arterial blood chemical components can be evaluated from the PPG signals. Most attempts to perform such evaluation on empirical bases have failed, especially for components concentrations. This paper introduces a non-empirical rational theory called Dynamic Pulsatile Spectroscopy (DPS) which can be used to analytically investigate the phenomena of PPG. The DPS theory provides the mathematically rigid method of how PPG signals can be used for arterial blood analysis to evaluate its chemical component concentrations and molar fractions spectroscopically and transcutaneously. It also highlights what other signals might be required for such evaluation. DPS opens the possibility of extending PPG application for blood analysis beyond conventional PO. The DPS basic principles are introduced in this paper.
机译:光电容积描记术(PPG)是一种使用光无创地获取每个心动周期器官的体积测量值的技术。脉搏血氧饱和度(PO)是一种经验技术,可从PPG信号评估动脉血氧饱和度(SpO2)。文献中有许多报道表明可以从PPG信号中评估其他动脉血液化学成分。大多数基于经验进行此类评估的尝试均以失败告终,尤其是对于成分浓度而言。本文介绍了一种非经验的有理理论,称为动态脉冲光谱(DPS),可用于分析研究PPG现象。 DPS理论提供了一种数学上严格的方法,即如何使用PPG信号进行动脉血分析,以光谱和经皮方式评估其化学成分浓度和摩尔分数。它还强调了这种评估可能还需要其他信号。 DPS开启了将PPG应用扩展到常规PO以外的血液分析的可能性。本文介绍了DPS的基本原理。

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