Vigmond Edward J, Hughes Matt, Plank G, Leon L Joshua
Department of Electrical and Computer Engineering, University of Calgary, Alberta, Canada.
J Electrocardiol. 2003;36 Suppl:69-74. doi: 10.1016/j.jelectrocard.2003.09.017.
Computer models offer many attractive benefits. However, the modeling of cardiac tissue is computationally expensive due to several physical constraints which result in fine spatiotemporal discretization over large spatiotemporal regions. Our laboratory has been actively trying to develop new techniques to make large scale cardiac simulations tractable over the past 15 years. This paper describes the latest modeling software that our group has developed, called Carp (Cardiac arrhythmias research package). It is designed to run in both shared memory and clustered computing environments. Carp aims to be modular and flexible by following a plug-in framework. This allows the latest models and most efficient solvers to be incorporated as well as enabling run-time selection of techniques. Performance results are given for a large-scale simulation which utilized a comprehensive membrane ionic current description.
计算机模型具有许多吸引人的优点。然而,由于一些物理限制,心脏组织建模在计算上成本高昂,这些限制导致在大的时空区域上进行精细的时空离散化。在过去15年里,我们实验室一直在积极尝试开发新技术,以使大规模心脏模拟变得可行。本文描述了我们团队开发的最新建模软件,称为Carp(心律失常研究包)。它旨在在共享内存和集群计算环境中运行。Carp旨在通过遵循插件框架实现模块化和灵活性。这既允许纳入最新模型和最有效的求解器,也支持在运行时选择技术。给出了一个利用全面膜离子电流描述的大规模模拟的性能结果。