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Locally excitatory globally inhibitory oscillator networks: theory and a

机译:局部兴奋性全局抑制性振荡器网络:理论与实践

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Abstract: A novel class of locally excitatory, globally inhibitory oscillator networks (LEGION) is proposed and investigated analytically and by computer simulation. The model of each oscillator corresponds to a standard relaxation oscillator with two time scales. The network exhibits a mechanism of selective gating, whereby an oscillator jumping up to its active phase rapidly recruits the oscillators stimulated by the same pattern, while preventing other oscillators from jumping up. We show analytically that with the selective gating mechanism the network rapidly achieves both synchronization within blocks of oscillators that are stimulated by connected regions and desynchronization between different blocks. Computer simulations demonstrate LEGION's promising ability for segmenting multiple input patterns in real time. This model lays a physical foundation for the oscillatory correlation theory of feature binding, and may provide an effective computational framework for scene segmentation and figure/ground segregation. !14
机译:摘要:提出了一类新型的局部励磁全局抑制振荡网络(LEGION),并通过计算机仿真进行了分析和研究。每个振荡器的模型对应于具有两个时标的标准张弛振荡器。该网络展示了一种选择性门控机制,通过该机制,一个跳升到其工作相位的振荡器可以迅速恢复由相同模式激发的振荡器,同时防止其他振荡器跳升。我们通过分析显示,通过选择性门控机制,网络可以快速实现振荡器块内的同步,该振荡器块受连接区域的刺激,并且可以实现不同块之间的不同步。计算机仿真表明,LEGION具有实时分割多个输入模式的有前途的能力。该模型为特征绑定的振荡相关理论奠定了物理基础,并且可以为场景分割和图形/地面分离提供有效的计算框架。 !14

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