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Vascular System Modeling in Parallel Environment - Distributed and Shared Memory Approaches

机译:并行环境中的血管系统建模-分布式和共享内存方法

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摘要

This paper presents two approaches in parallel modeling of vascular system development in internal organs. In the first approach, new parts of tissue are distributed among processors and each processor is responsible for perfusing its assigned parts of tissue to all vascular trees. Communication between processors is accomplished by passing messages, and therefore, this algorithm is perfectly suited for distributed memory architectures. The second approach is designed for shared memory machines. It parallelizes the perfusion process during which individual processing units perform calculations concerning different vascular trees. The experimental results, performed on a computing cluster and multicore machines, show that both algorithms provide a significant speedup.
机译:本文提出了两种并行建模内部器官血管系统发育的方法。在第一种方法中,组织的新部分分布在处理器之间,每个处理器负责将其分配的组织部分灌注到所有血管树中。处理器之间的通信是通过传递消息来完成的,因此,该算法非常适合于分布式内存体系结构。第二种方法是为共享内存计算机设计的。它使灌注过程并行化,在此过程中,各个处理单元执行有关不同血管树的计算。在计算集群和多核计算机上执行的实验结果表明,两种算法均可以显着提高速度。

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