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光电容积脉搏波描记法。第2部分。光源波长的影响。

Photoplethysmography. Part 2. Influence of light source wavelength.

作者信息

Lindberg L G, Oberg P A

机构信息

Department of Biomedical Engineering, Linköping University, Sweden.

出版信息

Med Biol Eng Comput. 1991 Jan;29(1):48-54. doi: 10.1007/BF02446295.

Abstract

When the microvascular blood perfusion in human skin is measured by photoplethysmography (PPG), infra-red light (800-960 nm) is normally used as the light source. The PPG signal, which consists of a pulsatile (AC) and a slowly fluctuating (DC) component, was studied at different optical wavelengths utilising optical fibres for guiding the light to and from the skin surface. Finger and forearm skin was examined and high and low skin blood perfusion was brought about by local water-induced temperature provocation. The analysis of the measurement results provided evidence that the use of shorter wavelengths in PPG (AC) for monitoring skin perfusion changes could be applicable. The use of different optical wavelengths also raises the possibility of recording perfusing changes at different depths in the superficial tissue. The sweat water content in stratum corneum of human skin will probably determine the total amount of reflected and backscattered radiation reaching the photodetector. This is important when the skin perfusion is changed by alterations in the environmental temperature conditions activating the sweat glands in tissue. Temperature-dependent optical characteristics of blood-free skin tissue may explain the limited ability of the DC component of PPG to monitor skin perfusion changes.

摘要

当通过光电容积脉搏波描记法(PPG)测量人体皮肤的微血管血液灌注时,通常使用红外光(800 - 960纳米)作为光源。利用光纤将光导入和导出皮肤表面,在不同光波长下研究了由脉动(交流)和缓慢波动(直流)成分组成的PPG信号。对手指和前臂皮肤进行了检查,并通过局部水诱导温度激发实现了高和低皮肤血液灌注。测量结果分析表明,在PPG(交流)中使用较短波长监测皮肤灌注变化可能是可行的。使用不同光波长也增加了记录浅表组织不同深度灌注变化的可能性。人体皮肤角质层中的汗水含水量可能会决定到达光电探测器的反射和反向散射辐射总量。当皮肤灌注因环境温度条件变化激活组织中的汗腺而改变时,这一点很重要。无血皮肤组织的温度依赖性光学特性可能解释了PPG直流成分监测皮肤灌注变化能力有限的原因。

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