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Strategies for efficient numerical implementation of hybrid multi-scale agent-based models to describe biological systems

机译:用于描述生物系统的基于混合多尺度Agent的模型的高效数值实现策略

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摘要

Biologically related processes operate across multiple spatiotemporal scales. For computational modeling methodologies to mimic this biological complexity, individual scale models must be linked in ways that allow for dynamic exchange of information across scales. A powerful methodology is to combine a discrete modeling approach, agent-based models (ABMs), with continuum models to form hybrid models. Hybrid multi-scale ABMs have been used to simulate emergent responses of biological systems. Here, we review two aspects of hybrid multi-scale ABMs: linking individual scale models and efficiently solving the resulting model. We discuss the computational choices associated with aspects of linking individual scale models while simultaneously maintaining model tractability. We demonstrate implementations of existing numerical methods in the context of hybrid multi-scale ABMs. Using an example model describing Mycobacterium tuberculosis infection, we show relative computational speeds of various combinations of numerical methods. Efficient linking and solution of hybrid multi-scale ABMs is key to model portability, modularity, and their use in understanding biological phenomena at a systems level.
机译:与生物有关的过程跨多个时空尺度运作。为了模拟这种生物学复杂性的计算建模方法,必须以允许跨尺度动态交换信息的方式链接各个尺度模型。一种有效的方法是将离散建模方法,基于代理的模型(ABM)与连续模型相结合以形成混合模型。混合多尺度ABM已用于模拟生物系统的紧急响应。在这里,我们回顾了混合多尺度ABM的两个方面:链接各个尺度模型和有效求解结果模型。我们讨论与链接各个比例模型相关的方面的计算选择,同时保持模型的可处理性。我们在混合多尺度ABM的背景下演示了现有数值方法的实现。使用描述结核分枝杆菌感染的示例模型,我们显示了数值方法的各种组合的相对计算速度。混合多尺度ABM的有效链接和解决方案是模型可移植性,模块性及其在系统层次上理解生物学现象的模型的关键。

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