Analysis of a microcirculatory windkessel model using photoplethysmography with green light: A pilot study

Akio Tanaka
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引用次数: 1

Abstract

In this study, a vasomotion quantification method using a photoplethysmography prototype, which performs near-infrared spectroscopy in combination with green light, is proposed. A structure that suppresses the motion artifact and that is held by the eyeglasses on the back of the ear enables the relative concentration changes of total hemoglobin and pulse wave amplitude to be measured during exercise with and without the presence of wind impacting the face. We established a microcirculatory windkessel model including arteriovenous anastomoses estimated from the blood flow changes in the depth direction that were acquired using three wavelengths of light and reproduced the vasomotion on a computer. The values predicted by the model were in good agreement with the measured values. The extracted vasomotion can be used to understand autonomic control by the central nervous system.
用绿光光容积脉搏图分析微循环风帆模型:一项初步研究
在这项研究中,提出了一种使用光容积脉搏波成像原型的血管舒缩量化方法,该原型将近红外光谱与绿光相结合。一种抑制运动伪影的结构,由耳后的眼镜支撑,可以在运动过程中测量总血红蛋白和脉搏波振幅的相对浓度变化,无论是否有风影响面部。我们建立了一个微循环血管模型,包括动静脉吻合,根据血流在深度方向上的变化估计,使用三个波长的光,并在计算机上复制血管运动。模型预测值与实测值吻合较好。提取的血管舒缩可以用来理解中枢神经系统的自主控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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