首页> 外文会议>World Congress on Medical Physics and Biomedical Engineering >Time-Resolved Reflectance from An Adult Head Model with Nonscattering Regions by The Finite-Difference Time-Domain Analysis Using New Boundary Conditions
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Time-Resolved Reflectance from An Adult Head Model with Nonscattering Regions by The Finite-Difference Time-Domain Analysis Using New Boundary Conditions

机译:通过使用新边界条件的有限差分时间域分析,从成年头模型与非线性区域的反射反射率

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Time-resolved reflectance from an adult head model composed of multilayered slab with nonscattering regions has been predicted by the finite difference time domain analysis using new boundary conditions at the surface of scattering region. Light propagation across the nonscattering layer was calculated based on the light intensity characteristics along a ray in free space. Additional equivalent source functions due to light from scattering regions across the nonscattering region were introduced into the diffusion equation and an additional set of the diffusion equation was solved by FDTD analysis by employing new boundary conditions. The formulation was used to calculate time-resolved reflectances of four-layered slabs containing a nonscattering layer. The received light intensity and the mean time of flight estimated from the time-resolved reflectance are in reasonable agreement with previously reported experimental data and Monte Carlo simulations. The FDTD analysis was applied to estimate sensitivities in reflectance due to local absorption coefficient changes in gray matter in the model. It has been become clear that sensitivities are greatly enhanced in time-resolved reflectance and the source detector separations maximizing the sensitivities are strongly dependent on the existence of the nonscattering layer.
机译:通过使用散射区域表面的新边界条件的有限差分时间域分析预测了由多层板组成的成人头部模型的时间分辨反射率。基于沿着自由空间中的光线的光强度特征来计算非电动图层上的光传播。由于从非传送区域两端的散射区域引入的附加等效源功能被引入扩散方程,并且通过采用新的边界条件,通过FDTD分析解决了另外的扩散方程。制剂用于计算含有非电动层的四层板的时间分辨反射。从时间分辨反射率估计的接收光强度和平均飞行时间与先前报道的实验数据和蒙特卡罗模拟合理协议。应用FDTD分析来估算模型中灰质麦克真源局部吸收系数变化的反射敏感性。已经清楚地,在时间解决的反射率下大大提高了敏感性,并且最大化敏感度的源检测器分离是强烈的,强烈依赖于非电动层的存在。

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