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首页> 外文期刊>Neuron >Mechanisms of gamma oscillations in the hippocampus of the behaving rat.
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Mechanisms of gamma oscillations in the hippocampus of the behaving rat.

机译:行为大鼠海马中γ振荡的机制。

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摘要

Gamma frequency oscillations (30-100 Hz) have been suggested to underlie various cognitive and motor functions. Here, we examine the generation of gamma oscillation currents in the hippocampus, using two-dimensional, 96-site silicon probes. Two gamma generators were identified, one in the dentate gyrus and another in the CA3-CA1 regions. The coupling strength between the two oscillators varied during both theta and nontheta states. Both pyramidal cells and interneurons were phase-locked to gamma waves. Anatomical connectivity, rather than physical distance, determined the coupling strength of the oscillating neurons. CA3 pyramidal neurons discharged CA3 and CA1 interneurons at latencies indicative of monosynaptic connections. Intrahippocampal gamma oscillation emerges in the CA3 recurrent system, which entrains the CA1 region via its interneurons.
机译:伽马频率振荡(30-100 Hz)被认为是各种认知和运动功能的基础。在这里,我们使用二维的96位硅探针检查海马体中伽马振荡电流的产生。确定了两个伽马发生器,一个在齿状回,另一个在CA3-CA1区。两个振荡器之间的耦合强度在θ和非θ状态下均发生变化。锥体细胞和中间神经元都被锁相到伽马波。解剖学上的连通性而不是物理距离决定了振荡神经元的耦合强度。 CA3锥体神经元以指示单突触连接的潜伏期释放CA3和CA1中间神经元。海马内伽马振荡出现在CA3复发系统中,该系统通过其中间神经元夹带CA1区。

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