Dierckx Hans, Verschelde Henri, Panfilov Alexander V
Department of Physics and Astronomy, Krijgslaan 281 S9, 9000 Gent, Belgium.
Chaos. 2017 Sep;27(9):093912. doi: 10.1063/1.4999606.
The rotating spiral waves that emerge in diverse natural and man-made systems typically exhibit a particle-like behaviour since their adjoint critical eigenmodes (response functions) are often seen to be localised around the spiral core. We present a simple method to numerically compute response functions for circular-core and meandering spirals by recording their drift response to many elementary perturbations. Although our method is computationally more expensive than solving the adjoint system, our technique is fully parallellisable, does not suffer from memory limitations and can be applied to experiments. For a cardiac tissue model with the linear spiral core, we find that the response functions are localised near the turning points of the trajectory.
在各种自然和人造系统中出现的旋转螺旋波通常表现出类似粒子的行为,因为它们的伴随临界本征模(响应函数)常常被发现局限于螺旋核心周围。我们提出了一种简单的方法,通过记录圆形核心螺旋波和蜿蜒螺旋波对许多基本扰动的漂移响应,以数值方式计算其响应函数。尽管我们的方法在计算上比求解伴随系统更昂贵,但我们的技术完全可并行化,不受内存限制,并且可以应用于实验。对于具有线性螺旋核心的心脏组织模型,我们发现响应函数局限于轨迹的转折点附近。