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Higher Order Spike Synchrony in Prefrontal Cortex during Visual Memory

机译:视觉记忆过程中前额叶皮层的高阶峰值同步

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摘要

Precise temporal synchrony of spike firing has been postulated as an important neuronal mechanism for signal integration and the induction of plasticity in neocortex. As prefrontal cortex plays an important role in organizing memory and executive functions, the convergence of multiple visual pathways onto PFC predicts that neurons should preferentially synchronize their spiking when stimulus information is processed. Furthermore, synchronous spike firing should intensify if memory processes require the induction of neuronal plasticity, even if this is only for short-term. Here we show with multiple simultaneously recorded units in ventral prefrontal cortex that neurons participate in 3 ms precise synchronous discharges distributed across multiple sites separated by at least 500 μm. The frequency of synchronous firing is modulated by behavioral performance and is specific for the memorized visual stimuli. In particular, during the memory period in which activity is not stimulus driven, larger groups of up to seven sites exhibit performance dependent modulation of their spike synchronization.
机译:尖峰发射的精确时间同步被认为是重要的神经元机制,用于信号整合和诱导新皮层的可塑性。由于前额叶皮层在组织记忆和执行功能中起着重要作用,因此多种视觉通路在PFC上的融合表明,在处理刺激信息时,神经元应优先同步其突跳。此外,如果记忆过程需要诱导神经元可塑性,则同步加长激发应该加强,即使这只是短期的。在这里,我们通过腹侧前额叶皮层中多个同时记录的单元显示,神经元参与了3μms的精确同步放电,这些放电分布在至少500μm的多个位置。同步射击的频率由行为表现调节,并且特定于记忆的视觉刺激。特别地,在不刺激活动的存储周期中,最多七个站点的较大组显示其尖峰同步的性能依赖于调制。

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