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Computer simulations of activation in an anatomically based model of the human ventricular conduction system

机译:基于人体心室传导系统的解剖模型中激活的计算机模拟

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Simulations of the electrical activity during excitation were performed in an anatomically based model of the human ventricular conduction system. Each of the 33000 elements of this model represented a unit bundle of Purkinje or atrioventricular nodal tissue. The Ebihara-Johnson model for sodium defined the active membrane characteristics. Using a combination of new and existing modeling techniques, simulations of excitation were completed in approximately 5 min CPU time on an IBM 3090 at the Cornell National Supercomputer Facility. Activation times at sites in the model were compared to experimental measurements for the excitation of the ventricular myocardium on the endocardial surface. After the times were scaled to adjust for conduction velocity and ventricular latency effects, the match between simulation and experimentally obtained times was good.
机译:在人体心室传导系统的基于解剖学的模型中进行了激发过程中电活动的模拟。该模型的33000个元素中的每一个都代表一个单位束的Purkinje或房室结组织。钠的Ebihara-Johnson模型定义了活性膜的特性。使用新的和现有的建模技术的组合,在康奈尔国家超级计算机工厂的IBM 3090上,在大约5分钟的CPU时间内完成了对激励的仿真。将模型中各部位的激活时间与心内膜表面上心室心肌激发的实验测量值进行比较。在对时间进行比例调整以调整传导速度和心室潜伏期影响后,模拟时间和实验获得的时间之间的匹配良好。

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