He Daihai, Hu Gang, Zhan Meng, Ren Wei, Gao Zhuo
Department of Physics, Beijing Normal University, Beijing, 100875, China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 May;65(5 Pt 2):055204. doi: 10.1103/PhysRevE.65.055204. Epub 2002 May 6.
Pattern formation of spiral waves in an inhomogeneous excitable medium with small-world connections is investigated. In both cases, with completely local regular connections and with completely random connections, spiral waves cannot survive in the given inhomogeneous medium. It is found that with small-world connections (basically local connections plus a small number of random connections) a well behaved spiral wave can be formed against the destructive role of the inhomogeneous medium. There also exists an optimal fraction of random connections which can greatly enhance the probability of spiral wave formation; this resembles the behavior of stochastic resonance.
研究了具有小世界连接的非均匀可激发介质中螺旋波的模式形成。在完全局部规则连接和完全随机连接这两种情况下,螺旋波在给定的非均匀介质中都无法存活。研究发现,对于小世界连接(基本为局部连接加上少量随机连接),可以形成行为良好的螺旋波,以对抗非均匀介质的破坏作用。还存在一个随机连接的最佳比例,它可以大大提高螺旋波形成的概率;这类似于随机共振的行为。