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利用钕和水的吸收特性评估组织中的光程长度以应用于近红外光谱学。

Assessment of optical path length in tissue using neodymium and water absorptions for application to near-infrared spectroscopy.

作者信息

Nighswander-Rempel Stephen P, Kupriyanov Valery V, Shaw R Anthony

机构信息

Institute for Biodiagnostics, 435 Ellice Ave., Winnipeg, Manitoba R3B 1Y6.

出版信息

J Biomed Opt. 2005 Mar-Apr;10(2):024023. doi: 10.1117/1.1896372.

Abstract

Quantitative analysis of blood oxygen saturation using near-IR spectroscopy is made difficult by uncertainties in both the absolute value and the wavelength dependence of the optical path length. We introduce a novel means of assessing the wavelength dependence of path length, exploiting the relative intensities of several absorptions exhibited by an exogenous contrast agent (neodymium). Combined with a previously described method that exploits endogenous water absorptions, the described technique estimates the absolute path length at several wavelengths throughout the visible/near-IR range of interest. Isolated rat hearts (n = 11) are perfused separately with Krebs-Henseleit buffer (KHB) and a KHB solution to which neodymium had been added, and visible/near-IR spectra are acquired using an optical probe made up of emission and collection fibers in concentric rings of diameters 1 and 3 mm, respectively. Relative optical path lengths at 520, 580, 679, 740, 800, 870, and 975 nm are 0.41+/-0.13, 0.49+/-0.21, 0.90+/-0.09, 0.94+/-0.01, 1.00, 0.84+/-0.01, and 0.78+/-0.08, respectively. The absolute path length at 975 nm is estimated to be 3.8+/-0.6 mm, based on the intensity of the water absorptions and the known tissue water concentration. These results are strictly valid only for the experimental geometry applied here.

摘要

由于光程长度的绝对值和波长依赖性都存在不确定性,利用近红外光谱对血氧饱和度进行定量分析变得困难。我们引入了一种评估光程长度波长依赖性的新方法,利用外源性造影剂(钕)表现出的几种吸收的相对强度。结合先前描述的利用内源性水吸收的方法,所描述的技术可估计在整个可见/近红外感兴趣范围内几个波长处的绝对光程长度。将分离的大鼠心脏(n = 11)分别用 Krebs-Henseleit 缓冲液(KHB)和添加了钕的 KHB 溶液灌注,并使用由直径分别为 1 和 3 mm 的同心环中的发射和收集光纤组成的光学探头采集可见/近红外光谱。在 520、580、679、740、800、870 和 975 nm 处的相对光程长度分别为 0.41±0.13、0.49±0.21、0.90±0.09、0.94±0.01、1.00、0.84±0.01 和 0.78±0.08。基于水吸收的强度和已知的组织水浓度,估计 975 nm 处的绝对光程长度为 3.8±0.6 mm。这些结果仅在此处应用的实验几何结构中严格有效。

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