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大鼠海马中的γ频率振荡:体内细胞内分析

Gamma frequency oscillation in the hippocampus of the rat: intracellular analysis in vivo.

作者信息

Penttonen M, Kamondi A, Acsády L, Buzsáki G

机构信息

Center for Molecular and Behavioural Neuroscience, Rutgers, The State University of New Jersey, Newark 07102, USA.

出版信息

Eur J Neurosci. 1998 Feb;10(2):718-28. doi: 10.1046/j.1460-9568.1998.00096.x.

Abstract

Gamma frequency field oscillations reflect synchronized synaptic potentials in neuronal populations within the approximately 10-40 ms range. The generation of gamma activity in the hippocampus was investigated by intracellular recording from principal cells and basket cells in urethane anaesthetized rats. The recorded neurones were verified by intracellular injection of biocytin. Gamma frequency field oscillations were nested within the slower theta waves. The phase and amplitude of intracellular gamma were voltage dependent with an almost complete phase reversal at Cl- equilibrium potential in pyramidal cells. Basket cells fired at gamma frequency and were phase-locked to the same phase of the gamma oscillation as pyramidal cells. Current-induced depolarization coupled with synaptically induced inhibition resulted in gamma frequency discharge (30-80 Hz) of pyramidal cells without accommodation. These observations suggest that at least part of the gamma frequency field oscillation reflects rhythmic hyperpolarization of principal cells, brought about by the rhythmically discharging basket neurones. Resonant properties of pyramidal cells might facilitate network synchrony in the gamma frequency range.

摘要

γ 频率场振荡反映了在大约10 - 40毫秒范围内神经元群体中同步的突触电位。通过对乌拉坦麻醉大鼠的主细胞和篮状细胞进行细胞内记录,研究了海马体中γ 活动的产生。通过细胞内注射生物素对记录的神经元进行了验证。γ 频率场振荡嵌套在较慢的θ 波内。锥体细胞内γ 的相位和幅度与电压有关,在氯离子平衡电位时几乎完全发生相位反转。篮状细胞以γ 频率放电,并与锥体细胞的γ 振荡的同一相位锁相。电流诱导的去极化与突触诱导的抑制相结合,导致锥体细胞在无适应性的情况下以γ 频率放电(30 - 80赫兹)。这些观察结果表明,至少部分γ 频率场振荡反映了主细胞的节律性超极化,这是由节律性放电的篮状神经元引起的。锥体细胞的共振特性可能有助于γ 频率范围内的网络同步。

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