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成人脑部光学特性的无创测定:近红外光谱法

Noninvasive determination of the optical properties of adult brain: near-infrared spectroscopy approach.

作者信息

Choi JeeHyun, Wolf Martin, Toronov Vladislav, Wolf Ursula, Polzonetti Chiara, Hueber Dennis, Safonova Larisa P, Gupta Rajarsi, Michalos Antonios, Mantulin William, Gratton Enrico

机构信息

Laboratory for Fluorescence Dynamics, Department of Physics, University of Illinois at Urbana-Champaign, 1110 W. Green Street, Urbana, IL 61801-3080, USA.

出版信息

J Biomed Opt. 2004 Jan-Feb;9(1):221-9. doi: 10.1117/1.1628242.

Abstract

The basic parameters for physiological measurements provided by near-infrared spectroscopy are the local absorption and scattering coefficients. For the adult human head, they have been difficult to measure noninvasively because of the layered structure of the head. The results of measurements of absorption and reduced scattering coefficients through the forehead on 30 adult volunteers using a multidistance frequency domain method are reported. The optode separation distance ranged from 10 to 80 mm and measurements were recorded at 758 and 830 nm. The measured absorption and reduced scattering coefficients of the forehead were used to evaluate the hemoglobin content in the scalp and brain as well as cerebral oxygen saturation. We found that cerebral oxygenation was relatively narrowly distributed within the subject group (the standard deviation was about 3% for scalp and 6% for brain, respectively), whereas hemoglobin concentrations had a relatively broader distribution. We found that as the optode distance increased, the absorption coefficients increased and the scattering coefficients decreased, retrieving the optical values of scalp and brain for shorter and longer optode distances, respectively. We present the transition curves of the absorption and reduced scattering coefficients as functions of the optode distance. In order to verify the values for each layer, a comparison between the experimental data and a prediction based on the two-layer model of the adult head was carried out. The thicknesses of scalp and skull for the two-layer model were obtained by magnetic resonance imaging of a subject's head. The optical parameters obtained from the two-layer model agreed very well with those measured by the multidistance method.

摘要

近红外光谱法提供的生理测量基本参数是局部吸收系数和散射系数。对于成年人的头部,由于其分层结构,很难进行无创测量。本文报道了使用多距离频域方法对30名成年志愿者前额进行吸收系数和约化散射系数测量的结果。光极间距范围为10至80毫米,测量波长为758纳米和830纳米。通过测量前额的吸收系数和约化散射系数来评估头皮和大脑中的血红蛋白含量以及脑氧饱和度。我们发现,受试者组内脑氧合分布相对较窄(头皮的标准差约为3%,大脑的标准差约为6%),而血红蛋白浓度分布相对较宽。我们发现,随着光极间距增加,吸收系数增加,散射系数降低,分别得到了较短和较长光极间距下头皮和大脑的光学值。我们给出了吸收系数和约化散射系数随光极间距变化的过渡曲线。为了验证各层的值,将实验数据与基于成人头部两层模型的预测结果进行了比较。两层模型中头皮和颅骨的厚度通过对一名受试者头部的磁共振成像获得。从两层模型得到的光学参数与多距离方法测量的结果非常吻合。

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