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首页> 外文期刊>Applied optics >Near-infrared light propagation in an adult head model. I. Modeling of low-level scattering in the cerebrospinal fluid layer
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Near-infrared light propagation in an adult head model. I. Modeling of low-level scattering in the cerebrospinal fluid layer

机译:成年头部模型中的近红外光传播。 I.脑脊液层中低水平散射的建模

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Adequate modeling of light propagation in a human head is important for quantitative near-infrared spectroscopy and optical imaging. The presence of a nonscattering cerebrospinal fluid (CSF) that surrounds the brain has been previously shown to have a strong effect on light propagation in the head. However, in reality, a small amount of scattering is caused by the arachnoid trabeculae in the CSF layer. In this study, light propagation in an adult head model with discrete scatterers distributed within the CSF layer has been predicted by Monte Carlo simulation to investigate the effect of the small amount of scattering caused by the arachnoid trabeculae in the CSF layer. This low scattering in the CSF layer is found to have little effect on the mean optical path length, a parameter that can be directly measured by a time-resolved experiment. However, the partial optical path length in brain tissue that relates the sensitivity of the detected signal to absorption changes in the brain is strongly affected by the presence of scattering within the CSF layer. The sensitivity of the near-infrared signal to hemoglobin changes induced by brain activation is improved by the effect of a low-scattering CSF layer. (C) 2003 Optical Society of America. [References: 25]
机译:对人头中的光传播进行适当的建模对于定量近红外光谱和光学成像非常重要。先前已经证明,围绕大脑的非散射性脑脊髓液(CSF)的存在对头部中的光传播具有很强的影响。然而,实际上,CSF层中的蛛网膜小梁引起少量散射。在这项研究中,通过蒙特卡罗模拟预测了在CSF层内分布离散散射体的成年头部模型中的光传播,以研究蛛网膜小梁在CSF层中引起的少量散射的影响。发现在CSF层中的这种低散射对平均光程长度几乎没有影响,该平均光程长度可以通过时间分辨实验直接测量。但是,脑组织中与检测信号的敏感性与大脑吸收变化相关的部分光程长度受CSF层内散射的强烈影响。低散射CSF层的作用提高了近红外信号对脑激活引起的血红蛋白变化的敏感性。 (C)2003年美国眼镜学会。 [参考:25]

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