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氯胺酮-赛拉嗪麻醉下大鼠海马CA1和CA3锥体神经元θ活动期间的低频和高频膜电位振荡

Low- and high-frequency membrane potential oscillations during theta activity in CA1 and CA3 pyramidal neurons of the rat hippocampus under ketamine-xylazine anesthesia.

作者信息

Soltesz I, Deschênes M

机构信息

Centre de Recherche en Neurobiologie, Université Laval, Quebec, Canada.

出版信息

J Neurophysiol. 1993 Jul;70(1):97-116. doi: 10.1152/jn.1993.70.1.97.

Abstract
  1. Intracellularly recorded low- and high-frequency (4-6 and 25-50 Hz, respectively), rhythmic, spontaneous membrane potential oscillations were investigated in pyramidal neurons of the rat hippocampus in vivo, during theta (theta, 4-6 Hz) electroencephalographic (EEG) activity, under ketamine-xylazine anesthesia. 2. The EEG activity showed two spectral peaks, one in the theta range, the other at higher frequencies (25-50 Hz). On the basis of their electrophysiological and pharmacological properties, it was concluded that the EEG theta-waves, and the fast EEG rhythm, recorded during ketamine-xylazine anesthesia, share the basic properties of those theta and fast rhythms that are recorded under the effects of other types of anesthetics. 3. When intracellular recordings (n = 32) were made with electrodes filled with potassium-acetate (K-acetate), the only CA1 and CA3 pyramidal cells (PCs) considered for further analysis were those that did not fire rhythmically at most or each cycle of the theta rhythm at the resting membrane potential. During EEG-theta, the membrane potential (Vm) of these cells showed a prominent oscillation (3-15 mV) with frequencies similar to those of the EEG-theta (the intracellular theta rhythm, intra-theta). 4. The frequency of the intra-theta was independent of the Vm. However, the phase difference between the intra-theta and the EEG-theta was voltage dependent in both types of cells. CA1 PCs showed a large (120-180 degrees, where 360 degrees is the full cycle), gradual shift in the phase difference between the intra-theta and the EEG-theta, when the membrane was hyperpolarized to -85 from -65 mV. Although CA3 PCs displayed a larger variability in their phase-voltage relations, a voltage-dependent phase shift (90-180 degrees) could be observed in CA3 PCs as well. 5. Although the amplitude of the intra-theta in both CA1 and CA3 PCs could display large, sudden, spontaneous changes at a given Vm, the amplitude-Vm plots tended to show a minimum between -70 and -80 mV. Spontaneous changes in the amplitude of the intra-theta did not affect the phase difference between the intra- and the EEG-theta rhythms. 6. Intracellular injection of QX-314 (50-100 mM) did not change the phase-Vm or the amplitude-Vm relationships of CA1 PCs. 7. Intracellular injection of chloride (Cl-) ions greatly reduced the voltage dependency of the phase difference and revealed fast (duration: 20-25 ms), depolarizing potentials (5-20 mV), which appeared at high frequencies (25-50 Hz), amplitude modulated at theta-frequencies.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在氯胺酮-赛拉嗪麻醉下,于体内大鼠海马锥体细胞中,研究了细胞内记录的低频和高频(分别为4 - 6赫兹和25 - 50赫兹)、有节律的自发膜电位振荡,记录过程中伴有θ波(4 - 6赫兹)脑电图(EEG)活动。2. EEG活动显示出两个频谱峰值,一个在θ频段,另一个在较高频率(25 - 50赫兹)。基于其电生理和药理学特性,得出结论:在氯胺酮-赛拉嗪麻醉期间记录到的EEG θ波和快速EEG节律,与在其他类型麻醉剂作用下记录到的θ波和快速节律具有基本特性。3. 当用充满醋酸钾(K - 醋酸盐)的电极进行细胞内记录(n = 32)时,进一步分析所考虑的仅有的CA1和CA3锥体细胞(PCs)是那些在静息膜电位下,在θ节律的大多数或每个周期中无节律性放电的细胞。在EEG - θ期间,这些细胞的膜电位(Vm)显示出明显的振荡(3 - 15毫伏),其频率与EEG - θ(细胞内θ节律,intra - θ)相似。4. intra - θ的频率与Vm无关。然而,两种类型细胞中intra - θ与EEG - θ之间的相位差是电压依赖性的。当膜从 - 65毫伏超极化到 - 85毫伏时,CA1 PCs在intra - θ与EEG - θ之间的相位差上显示出大的(120 - 180度,其中360度为一个完整周期)、逐渐的偏移。尽管CA3 PCs在其相位 - 电压关系中表现出更大的变异性,但在CA3 PCs中也可观察到电压依赖性相位偏移(90 - 180度)。5. 尽管CA1和CA3 PCs中intra - θ的幅度在给定Vm下可能显示出大的、突然的、自发的变化,但幅度 - Vm图在 - 70至 - 80毫伏之间倾向于显示出最小值。intra - θ幅度的自发变化不影响intra - θ与EEG - θ节律之间的相位差。6. 细胞内注射QX - 314(50 - 100毫摩尔)未改变CA1 PCs的相位 - Vm或幅度 - Vm关系。7. 细胞内注射氯离子(Cl - )极大地降低了相位差的电压依赖性,并揭示出快速(持续时间:20 - 25毫秒)、去极化电位(5 - 20毫伏),这些电位以高频(25 - 50赫兹)出现,在θ频率下进行幅度调制。(摘要截取自400字)

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