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A parallel implementation of the Cellular Potts Model for simulation of cell-based morphogenesis

机译:用于模拟基于细胞形态发生的Cellular Potts模型的并行实现

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摘要

The Cellular Potts Model (CPM) has been used in a wide variety of biological simulations. However, most current CPM implementations use a sequential modified Metropolis algorithm which restricts the size of simulations. In this paper we present a parallel CPM algorithm for simulations of morphogenesis, which includes cell–cell adhesion, a cell volume constraint, and cell haptotaxis. The algorithm uses appropriate data structures and checkerboard subgrids for parallelization. Communication and updating algorithms synchronize properties of cells simulated on different processor nodes. Tests show that the parallel algorithm has good scalability, permitting large-scale simulations of cell morphogenesis (107 or more cells) and broadening the scope of CPM applications. The new algorithm satisfies the balance condition, which is sufficient for convergence of the underlying Markov chain.
机译:细胞盆栽模型(CPM)已用于多种生物学模拟中。但是,当前大多数CPM实现都使用顺序修改的Metropolis算法,该算法限制了模拟的大小。在本文中,我们提出了一种用于形态生成模拟的并行CPM算法,其中包括细胞间粘附,细胞体积约束和触觉趋向。该算法使用适当的数据结构和棋盘格子进行并行化。通信和更新算法同步在不同处理器节点上模拟的单元的属性。测试表明,并行算法具有良好的可扩展性,可以对细胞形态发生(10 7 个或更多的细胞)进行大规模仿真,并扩大了CPM应用范围。新算法满足了平衡条件,足以满足基础马尔可夫链的收敛。

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