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基于光电容积脉搏波成像的非接触式低成本生理信息测量综述。

A review of non-contact, low-cost physiological information measurement based on photoplethysmographic imaging.

作者信息

Liu He, Wang Yadong, Wang Lei

机构信息

Harbin Institute of Technology, China.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2012;2012:2088-91. doi: 10.1109/EMBC.2012.6346371.

Abstract

In recent decades, there has been increasing interest in low-cost, non-contact and pervasive methods for measuring physiological information, such as heart rate (HR), respiratory rate, heart rate variability (HRV) and oxyhemoglobin saturation. The conventional methods including wet adhesive Ag/AgCl electrodes for HR and HRV, the capnograph device for respiratory status and pulse oximetry for oxyhemoglobin saturation provide excellent signals but are expensive, troublesome and inconvenient. A method to monitor physiological information based on photoplethysmographic imaging offers a new means for health monitoring. Blood volume can be indirectly assessed in terms of blood velocity, blood flow rate and blood pressure, which, in turn, can reflect changes in physiological parameters. Changes in blood volume can be determined from the spectra of light reflected from or transmitted through body tissues. Images of an area of the skin surface are consecutively captured with the color camera of a computer or smartphone and, by processing and analyzing the light signals, physiological information such as HR, respiratory rate, HRV and oxyhemoglobin saturation can be acquired. In this paper, we review the latest developments in using photoplethysmographic imaging for non-contact health monitoring and discuss the challenges and future directions for this field.

摘要

近几十年来,人们对测量生理信息的低成本、非接触式和普及性方法越来越感兴趣,这些生理信息包括心率(HR)、呼吸频率、心率变异性(HRV)和氧合血红蛋白饱和度。传统方法包括用于测量心率和心率变异性的湿黏附式银/氯化银电极、用于监测呼吸状态的二氧化碳描记仪以及用于测量氧合血红蛋白饱和度的脉搏血氧仪,这些方法能提供出色的信号,但成本高昂、操作繁琐且不便。基于光电容积脉搏波成像监测生理信息的方法为健康监测提供了一种新手段。血容量可以通过血流速度、血流量和血压间接评估,而这些又能反映生理参数的变化。血容量的变化可以从人体组织反射或透射的光的光谱中确定。使用计算机或智能手机的彩色摄像头连续拍摄皮肤表面某一区域的图像,并通过处理和分析光信号,可以获取诸如心率、呼吸频率、心率变异性和氧合血红蛋白饱和度等生理信息。在本文中,我们综述了使用光电容积脉搏波成像进行非接触式健康监测的最新进展,并讨论了该领域面临的挑战和未来发展方向。

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