Mayer-Kress G
Ross Institute and Ross School, East Hampton, NY, USA.
Z Naturforsch C J Biosci. 1998 Jul-Aug;53(7-8):677-85. doi: 10.1515/znc-1998-7-820.
Non-linear dynamical models of brain activity can describe the spontaneous emergence of large-scale coherent structures both in a temporal and spatial domain. We discuss a number of discrete time dynamical neuron models that illustrate some of the mechanisms involved. Of special interest is the phenomenon of spatio-temporal stochastic resonance in which coherent structures emerge as a result of the interaction of the neuronal system with external noise at a given level punitive data. We then discuss the general role of stochastic noise in brain dynamics and how similar concepts can be studied in the context of networks of connected brains on the Internet.
大脑活动的非线性动力学模型能够在时间和空间域中描述大规模相干结构的自发出现。我们讨论了一些离散时间动力学神经元模型,这些模型阐释了其中涉及的一些机制。特别值得关注的是时空随机共振现象,即在给定水平的惩罚性数据下,相干结构因神经元系统与外部噪声的相互作用而出现。然后,我们讨论了随机噪声在大脑动力学中的一般作用,以及如何在互联网上相互连接的大脑网络背景下研究类似的概念。