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首页> 外文期刊>Applied optics >Near-infrared light propagation in an adult head model. II. Effect of superficial tissue thickness on the sensitivity of the near-infrared spectroscopy signal
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Near-infrared light propagation in an adult head model. II. Effect of superficial tissue thickness on the sensitivity of the near-infrared spectroscopy signal

机译:成年头部模型中的近红外光传播。二。表层组织厚度对近红外光谱信号灵敏度的影响

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It is important for near-infrared spectroscopy (NIRS) and imaging to estimate the sensitivity of the detected signal to the change in hemoglobin that results from brain activation and the volume of tissue interrogated for a specific source-detector fiber spacing. In this study light propagation in adult head models is predicted by Monte Carlo simulation to investigate the effect of the superficial tissue thickness on the partial optical path length in the brain and on the spatial sensitivity profile. In the case of source-detector spacing of 30 mm, the partial optical path length depends mainly on the depth of the inner skull surface whereas the spatial sensitivity profile is significantly affected by the thickness of the cerebrospinal fluid layer. The mean optical path length that can be measured by time-resolved experiments increases when the skull thickness increases whereas the partial mean optical path length in the brain decreases when the skull thickness increases. These results indicate that it is not appropriate to use the mean optical path length as an alternative to the partial optical path length to compensate the NIRS signal for the difference in sensitivity caused by variation of the superficial tissue thickness. (C) 2003 Optical Society of America. [References: 22]
机译:对于近红外光谱(NIRS)和成像,重要的是要估计检测到的信号对血红蛋白变化的敏感性,血红蛋白变化是由脑部激活和特定的源-检测器纤维间距所询问的组织体积导致的。在这项研究中,通过蒙特卡洛模拟预测了成年头部模型中的光传播,以研究浅表组织厚度对大脑局部光路长度和空间敏感性分布的影响。在源-探测器间距为30 mm的情况下,部分光路长度主要取决于颅骨内表面的深度,而空间敏感性分布受脑脊液层厚度的影响很大。当颅骨厚度增加时,可以通过时间分辨实验测量的平均光程长度会增加,而当颅骨厚度增加时,大脑中的部分平均光程长度会减少。这些结果表明,使用平均光程长度作为部分光程长度的替代方法来补偿NIRS信号以弥补由于表浅组织厚度变化而引起的灵敏度差异是不合适的。 (C)2003年美国眼镜学会。 [参考:22]

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