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Synchronization and desynchronization in a network of locally coupled Wilson-Cowan oscillators

机译:本地耦合的Wilson-Cowan振荡器网络中的同步和去同步

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A network of Wilson-Cowan (WC) oscillators is constructed, and its emergent properties of synchronization and desynchronization are investigated by both computer simulation and formal analysis. The network is a 2D matrix, where each oscillator is coupled only to its neighbors. We show analytically that a chain of locally coupled oscillators (the piecewise linear approximation to the WC oscillator) synchronizes, and we present a technique to rapidly entrain finite numbers of oscillators. The coupling strengths change on a fast time scale based on a Hebbian rule. A global separator is introduced which receives input from and sends feedback to each oscillator in the matrix. The global separator is used to desynchronize different oscillator groups. Unlike many other models, the properties of this network emerge from local connections that preserve spatial relationships among components and are critical for encoding Gestalt principles of feature grouping. The ability to synchronize and desynchronize oscillator groups within this network offers a promising approach for pattern segmentation and figure/ground segregation based on oscillatory correlation.
机译:构造了一个威尔逊-柯万(WC)振荡器网络,并通过计算机仿真和形式分析研究了其出现的同步和不同步特性。网络是2D矩阵,每个振荡器仅耦合到其邻居。我们分析地表明,一连串本地耦合的振荡器(与WC振荡器的分段线性近似)是同步的,并且我们提出了一种快速携带有限数量的振荡器的技术。耦合强度会根据Hebbian规则在快速范围内变化。引入了全局分离器,该全局分离器从矩阵中的每个振荡器接收输入并向其发送反馈。全局分隔符用于使不同的振荡器组不同步。与许多其他模型不同,此网络的属性来自保留了组件之间空间关系的本地连接,这对于编码格式塔特性组的原理至关重要。在该网络内使振荡器组同步和不同步的能力为基于振动相关性的图案分割和图形/地面隔离提供了一种有前途的方法。

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