首页> 外文会议>PSB;Pacific symposium on biocomputing; 20090105-09;20090105-09; Kohala Coast, HI(US);Kohala Coast, HI(US) >ADVANCES IN SEMANTIC REPRESENTATION FOR MULTISCALE BIOSIMULATION: A CASE STUDY IN MERGING MODELS
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ADVANCES IN SEMANTIC REPRESENTATION FOR MULTISCALE BIOSIMULATION: A CASE STUDY IN MERGING MODELS

机译:多尺度生物模拟的语义表示研究进展:以合并模型为例

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As a case-study of biosimulation model integration, we describe our experiences applying the SemSim methodology to integrate independently-developed, multiscale models of cardiac circulation. In particular, we have integrated the CircAdapt model (written by T. Arts for MATLAB) of an adapting vascular segment with a cardiovascular system model (written by M. Neal for JSim). We report on three results from the model integration experience. First, models should be explicit about simulations that occur on different time scales. Second, data structures and naming conventions used to represent model variables may not translate across simulation languages. Finally, identifying the dependencies among model variables is a non-trivial task. We claim that these challenges will appear whenever researchers attempt to integrate models from others, especially when those models are written in a procedural style (using MATLAB, Fortran, etc.) rather than a declarative format (as supported by languages like SBML, CellML or JSim's MML).
机译:作为生物模拟模型集成的案例研究,我们描述了我们使用SemSim方法集成独立开发的多尺度心脏循环模型的经验。特别是,我们将适应性血管段的CircAdapt模型(由T. Arts为MATLAB编写)与心血管系统模型(由M. Neal为JSim编写)集成在一起。我们将从模型集成经验中报告三个结果。首先,对于在不同时间尺度上发生的模拟,模型应该是明确的。其次,用于表示模型变量的数据结构和命名约定可能无法跨仿真语言转换。最后,识别模型变量之间的依赖关系是一项艰巨的任务。我们声称,只要研究人员尝试集成其他模型,这些挑战就会出现,特别是当这些模型以程序化样式(使用MATLAB,Fortran等)编写而不是声明性格式(如SBML,CellML或JSim的MML)。

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