matlab频谱分析代码-monte-carlo-simulation-3D-RMS:Lee等人的《CommunBiol2020》和《JNeu

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matlab频谱分析代码现实的微结构模拟器(RMS):3D单元中扩散的蒙特卡洛模拟(CUDA C ++) 第1部分:沿现实白质轴突的扩散时间相关性 该代码实现了最初在中开发的3d蒙特卡​​洛模拟,展示了沿白质轴突的实际轴突形状的功率谱(图1)和沿轴突的扩散率和峰度时间相关性(图2)。 白质轴突是从小鼠大脑的call体中分割出来的,详细信息请参见我们的另一个Github工具箱。 演示1,功率谱:计算沿轴突的实际轴突形状的功率谱(图1,图6和补充图1)。 演示2,人工形状生成:基于现实轴突的人工设计的微几何形状的生成(图2a)。 演示3,模拟:对扩散3d单元几何进行蒙特卡洛斯模拟。 该代码在CUDA C ++中实现,并且您需要Nvidia GPU来运行该代码。 演示4,分析:根据位移累积量计算扩散率和峰度时间依赖性(图2b-h)。 宽脉冲序列和基于渗透率交换的模拟将在另一个存储库中发布。 第2部分:为什么弹性碰撞是最可靠的粒子膜相互作用? 该代码出于教育目的实现了1d,2d和3d蒙特卡​​罗模拟,附录A和B in中有详细信息,展示了以下两个质膜相互作用引起的偏差:等步长随机跃迁(ERL)和

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