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脉搏血氧饱和度测定法的光与组织相互作用

The light-tissue interaction of pulse oximetry.

作者信息

Mannheimer Paul D

机构信息

From the Research and Development Department, Nellcor/Tyco Healthcare, Pleasanton, California.

出版信息

Anesth Analg. 2007 Dec;105(6 Suppl):S10-S17. doi: 10.1213/01.ane.0000269522.84942.54.

Abstract

The underlying science of pulse oximetry is based on a simple manipulation of the Lambert-Beer law, which describes the attenuation of light traveling through a mixture of absorbers. Signals from detected red and infrared light that has traveled through blood-perfused tissues are used to estimate the underlying arterial hemoglobin oxygen saturation. However, light scatters in tissue and influences some of the simplifications made in determining this relationship. Under most clinical circumstances, the empirical process that manufacturers use to calibrate the system during its design readily accommodates this and results in accurate readings. The same tissue light scattering properties allow sensors to be configured for use on opposing or adjacent surfaces, provided that the placement sites offer sufficient signal strength and are absent factors known to influence accuracy. In this paper I review the light-tissue interaction in pulse oximetry and describe some of the assumptions made and their implications. Certain deviations from the nominal conditions, whether clinical in nature or misuse of the product, can affect system performance. Consequently, users should be cautious in modifying sensors and/or using them on tissue sites not intended by the manufacturer (off-label use). While perhaps helpful for obtaining pulsatile signals or extending the lifetime of a sensor, some practices can disrupt the optical integrity of the measurement and negatively impact the oxygen saturation reading accuracy.

摘要

脉搏血氧饱和度测定法的基础科学基于对朗伯-比尔定律的简单运用,该定律描述了光在吸收体混合物中传播时的衰减情况。来自检测到的穿过血液灌注组织的红光和红外光的信号,被用于估算潜在的动脉血红蛋白氧饱和度。然而,光在组织中会发生散射,这会影响在确定这种关系时所做的一些简化假设。在大多数临床情况下,制造商在设计过程中用于校准系统的经验过程能够轻松适应这一点,并能得出准确的读数。相同的组织光散射特性使得传感器可以配置为在相对或相邻的表面上使用,前提是放置部位能提供足够的信号强度,且不存在已知会影响准确性的因素。在本文中,我回顾了脉搏血氧饱和度测定法中的光与组织相互作用,并描述了所做的一些假设及其影响。与标称条件的某些偏差,无论是临床性质的还是产品的误用,都可能影响系统性能。因此,用户在修改传感器和/或在制造商未指定的组织部位使用传感器(即标签外使用)时应谨慎。虽然某些做法可能有助于获取搏动信号或延长传感器的使用寿命,但有些做法可能会破坏测量的光学完整性,并对氧饱和度读数的准确性产生负面影响。

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