Cherry E M, Greenside H S, Henriquez C S
Department of Computer Science, Duke University, P.O. Box 90129, Durham, North Carolina 27708-0129, USA.
Phys Rev Lett. 2000 Feb 7;84(6):1343-6. doi: 10.1103/PhysRevLett.84.1343.
For plane-wave and many-spiral states of the experimentally based Luo-Rudy 1 model of heart tissue in large (8 cm square) domains, we show that a space-time-adaptive time-integration algorithm can achieve a factor of 5 reduction in computational effort and memory-but without a reduction in accuracy-when compared to an algorithm using a uniform space-time mesh at the finest resolution. Our results indicate that such an algorithm can be extended straightforwardly to simulate quantitatively three-dimensional electrical dynamics over the whole human heart.
对于基于实验的大型(8平方厘米)心脏组织Luo-Rudy 1模型的平面波和多螺旋状态,我们表明,与使用最高分辨率的均匀时空网格的算法相比,一种时空自适应时间积分算法可以在计算量和内存方面减少5倍,而且精度不会降低。我们的结果表明,这样的算法可以直接扩展以定量模拟整个人类心脏的三维电动力学。