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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Neural field dynamics with local and global connectivity and time delay
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Neural field dynamics with local and global connectivity and time delay

机译:具有本地和全局连接以及时间延迟的神经场动力学

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Spatially continuous networks with heterogeneous connections are ubiquitous in biological systems, in particular neural systems. To understand the mutual effects of locally homogeneous and globally heterogeneous connectivity, we investigate the stability of the rest-state activity of a neural field as a function of its connectivity. The variation of the connectivity is operationalized through manipulation of a heterogeneous two-point connection embedded into the otherwise homogeneous connectivity matrix, as well as by variation of connectivity strength and a finite transmission speed. The latter results in a time delay of communication among individual brain areas. We demonstrate that the local connectivity generates the well-known power-law behaviour of the electroencephalo_graphic power spectrum with an exponent close to _ 2, whereas the global connections generate a more characteristic line spectrum. These spectral characteristics are routinely observed in large-scale topographies of the human brain.
机译:具有异质连接的空间连续网络在生物系统,特别是神经系统中无处不在。为了了解局部同质和全局异构连接的相互影响,我们研究了神经场的静止状态活动的稳定性作为其连接性的函数。连接性的变化是通过操纵嵌入到其他均质连接性矩阵中的异构两点连接以及连接性强度和有限传输速度的变化来实现的。后者导致各个大脑区域之间交流的时间延迟。我们证明了本地连通性生成了脑电图功率谱的著名幂律行为,其幂指数接近_ 2,而全局连接则生成了更具特征性的线谱。这些光谱特征通常在人脑的大规模地形图中观察到。

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