首页> 外文会议>Diagnostic Optical Spectroscopy in Biomedicine III; Progress in Biomedical Optics and Imaging; vol.6 no.31 >Detection of heterogeneities within turbid media by time-gated transillumination: study based on the finite element method
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Detection of heterogeneities within turbid media by time-gated transillumination: study based on the finite element method

机译:时间门透射法检测混浊介质中的异质性:基于有限元方法的研究

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The potentialities offered by time-gated transillumination of inhomogeneous tissue slab media are numerically investigated in this paper. A finite element model is firstly presented in order to solve the time-dependent light transport in mutiple-scattering optical media containing different embedded objects. The numerical procedure is based on the Galerkin formulation added to an implicite finite difference scheme (Backward Euler) to integrate the resulting matrix formulation with respect to time. The meshed domain refers to Cartesian-coordinates system (x,y) such that the computational grid can be adapted to scan along the longitudinal coordinate x. It takes into account the boundary conditions relative to air-tissue interfaces. The use of the method is demonstrated by the forward computations of time-gated intensities, resulting from line scans across either partially absorbing or scattering cylindrical objects. The overall computations confirm that time-gating technique is very sensitive to local variations in optical properties that are due to hidden objects in turbid media. It is also shown that the lateral localization of these inclusions is enhanced when the time-gate width (Δt) is decreased to about 30 ps.
机译:本文对非均匀组织平板介质的时间门控透射照明提供的潜力进行了数值研究。首先提出一个有限元模型,以解决随时间变化的光在包含不同嵌入物体的多散射光学介质中的传输。数值过程基于加到隐式有限差分方案(Backward Euler)上的Galerkin公式,以相对于时间对所得矩阵公式进行积分。网格域指的是笛卡尔坐标系(x,y),因此计算网格可以适用于沿纵坐标x进行扫描。它考虑了相对于空气组织界面的边界条件。通过对部分吸收或散射的圆柱物体进行线扫描而得出的时间门控强度的正向计算证明了该方法的使用。总体计算证实,时间门控技术对由于混浊介质中隐藏物体而引起的光学特性局部变化非常敏感。还显示出,当时间门宽度(Δt)减小到大约30 ps时,这些夹杂物的横向定位会增强。

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