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Time-Resolved Noninvasive Optical Parameters Determination in Three-Dimensional Biological Tissue Using Finite Difference Time Domain Analysis with Nonuniform Grids for Diffusion Equations

机译:时域有限差分时域分析和扩散方程的非均匀网格在三维生物组织中时间分辨无创光学参数的确定

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The finite difference time domain (FDTD) analysis based on nonuniform grids for solving the diffusion equations in biological tissue has been proposed. It has been confirmed that the analysis greatly reduce the time for calculating time-resolved reflectance in three-dimensional scattering medium preserving the numerical accuracies. Based on the analysis, noninvasive optical parameters determination in three-dimensional inhomogeneous medium divided into 192 homogeneous cubic cell 10 (mm) in edge lengths has been studied. Chi-square fitting for theoretical and experimental time-resolved reflectance was optimized by the downhill simplex method. As a result, it has been become clear that absorption coefficients in all cubic cells in scattering medium are estimated within the accuracy of 10% by utilizing only time-resolved reflectance.
机译:为了解决生物组织中的扩散方程,提出了基于非均匀网格的时域有限差分法(FDTD)。已经证实,该分析极大地减少了在保留数值精度的情况下在三维散射介质中计算时间分辨反射率的时间。在此基础上,研究了在边缘长度分为192个均质立方晶胞10(mm)的三维非均质介质中无创光学参数的确定方法。通过下坡单纯形法对理论和实验时间分辨反射率的卡方拟合进行了优化。结果,已经清楚的是,仅利用时间分辨的反射率,估计散射介质中所有立方单元中的吸收系数在10%的精度之内。

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