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Stimulus-dependent augmented gamma oscillatory activity between the functionally connected cortical neurons in the primary visual cortex

机译:初级视觉皮层中功能连接的皮质神经元之间的刺激依赖性增强的伽马振荡活动

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摘要

Abstract : Neuronal assemblies typically synchronize within the gamma band (30-80 Hz) and arefundamental to information processing. Despite numerous investigations, the exact mechanisms and origins of gamma oscillations are yet to be known. Here, through multiunit recordings in the primary visual cortex of cats we show that the strength of gamma power (20-40 Hz and 60-80 Hz) is significantly stronger between the functionally connected units than the unconnected units within an assembly. Furthermore, there is increased frequency coherence in the gamma range between the connected units than theunconnected units. Lastly, the higher gamma rhythms (60-80 Hz) are mostly linked to the fast-spiking neurons. These results led us to postulate that gamma activity is intrinsically generated between the connected units within cell-assemblies (microcircuits) in relation to the stimulus within an emergent ‘50 ms-temporal window-of-opportunity’.
机译:摘要:神经元组件通常在伽马波段(30-80 Hz)内同步,并且是信息处理的基础。尽管进行了大量研究,但伽马振荡的确切机理和起源尚不清楚。在这里,通过在猫的主要视觉皮层中进行多单元记录,我们发现功能连接的单元之间的伽马功率(20-40 Hz和60-80 Hz)的强度明显强于组件中未连接的单元。此外,在连接的单元之间的伽马范围内的频率相干性比未连接的单元增加。最后,较高的伽玛节律(60-80 Hz)主要与快速爆发的神经元有关。这些结果使我们推测,与“ 50 ms-时间机会窗口”内的刺激有关,在细胞组件(微电路)内的连接单元之间固有地产生了伽马活性。

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