The Institute of Mathematical Sciences, CIT Campus, Taramani, Chennai, 600113, India.
Sci Rep. 2017 May 9;7(1):1594. doi: 10.1038/s41598-017-01670-y.
Many natural systems including the brain comprise coupled elements that are stimulated non-uniformly. In this paper we show that heterogeneously driven networks of excitatory-inhibitory units exhibit a diverse range of collective phenomena, including the appearance of spontaneous oscillations upon coupling quiescent elements. On varying the coupling strength a previously unreported transition is seen wherein the symmetries of the synchronization patterns in the stimulated and unstimulated groups undergo mutual exchange. The system also exhibits coexisting chaotic and non-chaotic attractors - a result that may be of interest in connection to earlier reports of varying degrees of chaoticity in the brain.
许多自然系统,包括大脑,都由非均匀刺激的耦合元素组成。本文中,我们展示了兴奋性-抑制性单元的异质驱动网络表现出多种集体现象,包括在连接静止单元时出现自发振荡。通过改变耦合强度,可以观察到一种以前未报道的转变,即受刺激和未受刺激组的同步模式对称性发生相互交换。该系统还表现出共存的混沌和非混沌吸引子-这一结果可能与大脑中不同程度混沌的早期报告有关。