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What is a moment? Transient synchrony as a collective mechanism for spatiotemporal integration

机译:什么时候瞬态同步作为时空整合的集体机制

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A previous paper described a network of simple integrate-and-fire neurons that contained output neurons selective for specific spa- tiotemporal patterns of inputs; only experimental results were described. We now present the principles behind the operation of this network and discuss how these principles point to a general class of computational operations that can be carried out easily and naturally by networks of spiking neurons. Transient synchrony of the action potentials of a group of neurons is used to signal "recognition" of a space-time pattern across the inputs of those neurons. Appropriate synaptic coupling produces synchrony when the inputs to these neurons are nearly equal, leaving the neurons unsynchronized or only weakly synchronized for other input cir- cumstances. When the input to this system comes from timed past events represented by decaying delay activity, the pattern of synaptic connections can be set such that synchronization occurs only for selected spatiotemporal patterns. We show how the recognition is invariant to uniform time warp and uniform inten- sity change of the input events. The fundamental recognition event is a transient collective synchronization, representing "many neurons now agree," an event that is then detected easily by a cell with a small time constant. If such synchronization is used in neurobiological computation, its hallmark will be a brief burst of gamma-band electroencephalogram noise when and where such a recognition event or decision occurs.
机译:先前的论文描述了一个简单的集成即发神经元网络,其中包含针对特定输入时空模式有选择的输出神经元。仅描述了实验结果。现在,我们介​​绍该网络操作背后的原理,并讨论这些原理如何指向可以由尖峰神经元网络轻松自然地执行的一般计算操作类。一组神经元的动作电位的瞬态同步用于在这些神经元的输入之间发出时空模式的“识别”信号。当这些神经元的输入几乎相等时,适当的突触耦合会产生同步,而对于其他输入情况,则使这些神经元不同步或仅弱同步。当此系统的输入来自由延迟活动衰减所表示的定时过去事件时,可以设置突触连接的模式,以便仅针对选定的时空模式进行同步。我们展示了识别对于输入事件的均匀时间扭曲和均匀强度变化是如何不变的。基本识别事件是一个短暂的集体同步,代表“现在很多神经元都同意”,然后该事件很容易被具有较小时间常数的细胞检测到。如果在神经生物学计算中使用了这种同步,则其识别标志将是在识别事件或决策发生的时间和地点短暂出现伽马波段脑电图噪声。

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