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Effect of thickness of the superficial tissues on the sensitivity profile for optical imaging

机译:浅表组织厚度对光学成像敏感性曲线的影响

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It is important for near-infrared imaging to estimate the sensitivity of detected signal to the change in absorption of tissue resulting from brain activation and the volume of tissue interrogated for a specific source-detector spacing. In this study, light propagation in adult head models is predicted by Monte Carlo simulation in order to investigate the effect of the thickness of the superficial tissues on the partial optical path length in the brain and on the spatial sensitivity profile. The effect of thickness of skull on the partial optical path length and spatial sensitivity profile is almost the same as that of the scalp. The effect of thickness of cerebrospinal fluid layer on the partial optical path length and spatial sensitivity profile is different from that of the scalp and skull. The partial optical path length mainly depends upon the depth of inner skull surface whilst the spatial sensitivity profile is considerably affected by the thickness of the cerebrospinal fluid layer.
机译:近红外成像对于估计检测到的信号的敏感性对由脑激活产生的组织的吸收变化和用于特定源检测器间隔的组织的体积来估计检测到的信号的敏感性。在该研究中,通过蒙特卡罗模拟预测成年头模型中的光传播,以研究浅表组织厚度对脑部中的部分光路长度和空间敏感性曲线的影响。颅骨厚度对部分光路长度和空间敏感性曲线的影响与头皮的厚度几乎相同。脑脊液层厚度对部分光路长度和空间敏感性曲线的影响与头皮和颅骨的效果不同。部分光路长度主要取决于内颅面的深度,而空间敏感性曲线受到脑脊液层的厚度的显着影响。

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