Glass Leon, Nagai Yoshihiko, Hall Kevin, Talajic Mario, Nattel Stanley
Centre for Nonlinear Dynamics and Department of Physiology, McGill University, 3655 Promenade Sir William Osler, Montreal, Quebec, Canada H3G 1Y6.
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Feb;65(2 Pt 1):021908. doi: 10.1103/PhysRevE.65.021908. Epub 2002 Jan 24.
Excitable media, such as the Belousov-Zhabotinsky medium or the heart, are capable of supporting excitation waves that circulate in a closed repetitive path--a phenomenon known as reentrant excitation. A single stimulus, depending on its magnitude, timing, and location, can cause a time shift of the reentrant excitation called resetting. The present study examines the ability of resetting data to predict the effects of periodic stimuli on reentrant excitation circulating on an annular domain. We compare the results of the theoretical models with experiments carried out in an animal model of a dangerous reentrant cardiac rhythm. The current work may lead to improved approaches to therapy through a better understanding of how typical clinical stimuli interact with abnormal reentrant cardiac rhythms.
可兴奋介质,如贝洛索夫-扎博京斯基介质或心脏,能够支持在封闭重复路径中循环的兴奋波——这一现象被称为折返性兴奋。单个刺激根据其强度、时间和位置,可导致折返性兴奋出现时间偏移,即重置。本研究考察了重置数据预测周期性刺激对在环形区域循环的折返性兴奋影响的能力。我们将理论模型的结果与在危险折返性心律失常动物模型中进行的实验结果进行比较。当前的工作可能会通过更好地理解典型临床刺激与异常折返性心律失常如何相互作用,从而带来改进的治疗方法。