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Comparative analysis of asynchronous cellular automata in stochastic pharmaceutical modelling

机译:随机药物建模中异步元胞自动机的比较分析

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In pharmaceutical modelling, cellular automata have been used as an established tool to represent molecular changes through discrete structural interactions. The data quality provided by such modelling is found suitable for the early drug design phase where flexibility is paramount. While both synchronous (CA) and asynchronous (ACA) types of automata have been used, analysis of their nature and comparative influence on model outputs is lacking. In this paper, we outline a representative probabilistic CA for modelling complex controlled drug formulations and investigate its transition from synchronous to asynchronous update algorithms. The key investigation points include quantification of model dynamics through three distinct scenarios, parallelisation performance and the ability to describe different release phenomena, namely erosion, diffusion and swelling. The choice of the appropriate update mechanism impacts the perceived realism of the simulation as well as the applicability of large-scale simulations.
机译:在药物建模中,细胞自动机已被用作通过离散结构相互作用表示分子变化的成熟工具。发现通过这种建模提供的数据质量适合于灵活性至关重要的早期药物设计阶段。尽管同时使用了同步(CA)和异步(ACA)类型的自动机,但仍缺乏对它们的性质以及对模型输出的比较影响的分析。在本文中,我们概述了用于建模复杂受控药物制剂的代表性概率CA,并研究了其从同步更新算法到异步更新算法的过渡。关键的研究重点包括通过三种不同的方案对模型动力学进行量化,并行化性能以及描述不同释放现象(即侵蚀,扩散和膨胀)的能力。适当的更新机制的选择会影响仿真的感知现实性以及大规模仿真的适用性。

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