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Adaptable three-dimensional Monte Carlo modeling of imaged blood vessels in skin

机译:皮肤中成像血管的自适应三维蒙特卡洛建模

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Abstract: In order to reach a higher level of accuracy in simulation of port wine stain treatment, we propose to discard the typical layered geometry and cylindrical blood vessel assumptions made in optical models and use imaging techniques to define actual tissue geometry. Two main additions to the typical 3D, weighted photon, variable step size Monte Carlo routine were necessary to achieve this goal. First, optical low coherence reflectometry (OLCR) images of rat skin were used to specify a 3D material array, with each entry assigned a label to represent the type of tissue in that particular voxel. Second, the Monte Carlo algorithm was altered so that when a photon crosses into a new voxel, the remaining path length is recalculated using the new optical properties, as specified by the material array. The model has shown good agreement with data from the literature. Monte Carlo simulations using OLCR images of asymmetrically curved blood vessels show various effects such as shading, scattering-induced peaks at vessel surfaces, and directionality-induced gradients in energy deposition. In conclusion, this augmentation of the Monte Carlo method can accurately simulate light transport for a wide variety of nonhomogeneous tissue geometries. !18
机译:摘要:为了在波特酒污渍处理的仿真中达到更高的准确性,我们建议放弃光学模型中的典型分层几何结构和圆柱状血管假设,并使用成像技术定义实际的组织几何结构。为了实现此目标,典型3D加权光子,可变步长的蒙特卡洛例程必须添加两个主要内容。首先,使用大鼠皮肤的光学低相干反射法(OLCR)图像指定3D材料阵列,每个条目都分配了一个标签,以表示该特定体素中的组织类型。其次,对蒙特卡洛算法进行了更改,以便当光子穿过新的体素时,将使用材料阵列指定的新的光学特性重新计算剩余的路径长度。该模型与文献数据显示出很好的一致性。使用不对称弯曲血管的OLCR图像进行的蒙特卡洛模拟显示了各种影响,例如阴影,血管表面散射引起的峰值以及能量沉积中方向性引起的梯度。总之,蒙特卡洛方法的这种增强可以准确地模拟各种非均匀组织几何形状的光传输。 !18

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