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Chronometric readout from a memory trace: gamma-frequency field stimulation recruits timed recurrent activity in the rat CA3 network

机译:从内存迹线中的计时读数:伽马频场刺激在大鼠CA3网络中募集定时的周期性活动

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摘要

Synchronous population activity is prevalent in neurones of the central nervous system and experimentally captured as oscillatory electric fields, the frequency of which can represent the state of the neural circuit, e.g. theta (∼5 Hz) and gamma (∼40 Hz). Such field oscillations, however, are not merely a result of coherent neuronal activity. They may also play active roles in information processing in the brain. In this study, we observed that, in cultured hippocampal slices, CA3 pyramidal cells responded to single-pulse stimuli with monosynaptic and polysynaptic potentials and firing spikes which occurred after variable latencies. The variability of the spike latencies was greatly reduced in the presence of weak electric field oscillations, especially the oscillation in the gamma-band frequency range, that per se induced only small fluctuations in the subthreshold membrane potential, and this effect was inhibited by blockade of NMDA receptor activity. Furthermore, the latency of the firing spikes changed if the stimulus was applied at a different phase of the imposed gamma oscillations. These results may suggest that the background field oscillations serve as an extracellular time reference and assure accurate and stable decoding of a memory trace present in cortical feedback networks.
机译:同步种群活动在中枢神经系统的神经元中普遍存在,并通过实验捕获为振荡电场,其频率可以表示神经回路的状态,例如: θ(〜5 Hz)和γ(〜40 Hz)。然而,这种场振荡不仅是神经元活动一致的结果。它们还可能在大脑的信息处理中发挥积极作用。在这项研究中,我们观察到,在培养的海马切片中,CA3锥体细胞对单脉冲刺激具有单突触和多突触电位,并在可变潜伏期后产生放电峰值。在存在弱电场振荡的情况下,尤其是在伽马频带频率范围内的振荡存在时,尖峰潜伏期的可变性大大降低了,而电场振荡本身仅引起亚阈值膜电位的小波动,并且这种影响被对β的阻断所抑制。 NMDA受体活性。此外,如果在施加的伽马振荡的不同阶段施加刺激,则发射尖峰的潜伏期也会改变。这些结果可能表明,背景场振荡可作为细胞外时间参考,并确保对皮层反馈网络中存在的记忆轨迹进行准确而稳定的解码。

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