首页> 外文会议>Ultrasonics Symposium (IUS), 2008 IEEE >Ultrasound backscattering by three-dimensional distributions of aggregated red blood cells: A Monte Carlo study
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Ultrasound backscattering by three-dimensional distributions of aggregated red blood cells: A Monte Carlo study

机译:聚集红细胞的三维分布对超声的反向散射:蒙特卡洛研究

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We present a Monte Carlo study on ultrasound backscattering by three-dimensional distributions of aggregated red blood cells (RBCs). In this study, particles were allowed to interact attractively with neighbors to form aggregates. The interaction potential energy profile between a pair of particles was mimicked by the Morse potential. The strength of pair interaction energy was controlled by fixing depth and width of the potential. Some three-dimensional configurations of cells representing realizations of the system were simulated by employing the Metropolis algorithm. The frequency dependent backscattering coefficient (BSC) was determined at three hematocrits, H = 20%, 30% and 40% and at different aggregation levels. It was noticed that BSC increased and spectral slope (SS) decreased as the aggregating potential was raised and the effect was more pronounced at higher hematocrits, particularly at 40%. In conclusion, this model can generate three-dimensional configurations of aggregated cells and can capture the role of RBC aggregation on BSC and SS.
机译:我们提出了通过聚集红细胞(RBCs)的三维分布对超声反向散射的蒙特卡洛研究。在这项研究中,允许粒子与邻居有吸引力地相互作用以形成聚集体。一对粒子之间的相互作用势能分布被莫尔斯电势模拟。偶对相互作用能的强度通过固定电位的深度和宽度来控制。利用Metropolis算法模拟了代表系统实现的一些单元的三维配置。在三个血细胞比容中确定频率相关的反向散射系数(BSC),H = 20%,30%和40%,并且处于不同的聚集水平。注意到随着聚集电位的升高,BSC升高,谱斜率(SS)降低,并且在较高的血细胞比容下,尤其在40%时,效果更为明显。总之,该模型可以生成聚集细胞的三维结构,并可以捕获RBC聚集在BSC和SS上的作用。

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