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Real-time computer simulations of excitable media: JAVA as a scientific language and as a wrapper for C and FORTRAN programs

机译:兴奋性媒体的实时计算机模拟:JAVA作为一种科学语言以及C和FORTRAN程序的包装

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We describe a useful setting for interactive, real-time study of mathematical models of cardiac electrical activity, using implicit and explicit integration schemes implemented in JAVA. These programs are intended as a teaching aid for the study and understanding of general excitable media. Particularly for cardiac cell models and the ionic currents underlying their basic electrical dynamics. Within the programs, excitable media properties such as thresholds and refractoriness and their dependence on parameter values can be analyzed. In addition, the cardiac model applets allow the study of reentrant tachyarrhythmias using premature stimuli and conduction blocks to induce or to terminate reentrant waves of electrical activation in one and two dimensions. The role of some physiological parameters in the transition from tachycardia to fibrillation also can be analyzed by varying the maximum conductances of ion channels associated with a given model in real time during the simulations. These applets are available for download at http://arrhythmia.hofstra.edu or its mirror site http://stardec.ascc.neu.edu/ similar to fenton. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 42]
机译:我们使用在JAVA中实现的隐式和显式集成方案,为交互式,实时地研究心脏电活动数学模型描述了一个有用的设置。这些程序旨在作为学习和理解一般可激发媒体的教具。特别是对于心脏细胞模型及其基本电动力学所基于的离子电流。在程序中,可以分析诸如阈值和耐火度之类的可激发介质特性及其对参数值的依赖性。另外,心脏模型小程序允许使用过早的刺激和传导阻滞在一维和二维中诱导或终止电活动的折返波,从而研究折返性快速性心律失常。在仿真过程中,还可以通过实时更改与给定模型关联的离子通道的最大电导,来分析某些生理参数在从心动过速过渡到原纤维形成的过程中的作用。这些小程序可从http://arrhythmia.hofstra.edu或类似于fenton的其镜像站点http://stardec.ascc.neu.edu/下载。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:42]

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