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[在调节θ节律的结构功能排除期间兔海马的神经元背景活动]

[The neuronal background activity of the rabbit hippocampus during functional exclusion of the structures that regulate theta rhythm].

作者信息

Kichigina V F, Kudina T A, Zenchenko K I, Vinogradova O S

机构信息

Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences, Pushchino-on-Oka.

出版信息

Zh Vyssh Nerv Deiat Im I P Pavlova. 1998 May-Jun;48(3):505-15.

PMID:9700915
Abstract

A method of controlled successive short-term (25-30 min) stabilization or suppression of the theta rhythm by local injections of lidocaine into median raphe nucleus or medical septal area (MS-DB) was tested for further analysis of the functional significance of theta-modulation in activity of hippocampal neurons. Extracellular recording of their activity (area CAl) was performed in unanaesthetized rabbits. Injection of lidocaine into MS-DS resulted in total suppression of theta modulation in neuronal activity and EEG of the hippocampus. Mean frequency of the background activity was not changed in the majority of the units but was significantly increased in a limited group of high-frequency neurons (putative inhibitory cells). Injection into medial raphe, the source of serotonergic afferents to MS-DB and hippocampus, was followed by an increase in regularity and frequency of theta modulation, by appearance of additional group of neurons with rhythmic modulation, and by expression of continuous theta in the hippocampal EEG. Mean frequency of discharge and its regularity were significantly increased in the majority of the cells. The data confirm the presence of tonic inhibitory control of theta-generating septo-hippocampal system by the medial raphe nucleus, which can be regarded as an antagonist of the midbrain reticular formation in this respect.

摘要

通过向中缝核或内侧隔区(MS-DB)局部注射利多卡因来控制连续短期(25 - 30分钟)稳定或抑制θ节律的方法,被用于进一步分析θ调制在海马神经元活动中的功能意义。在未麻醉的兔子中对其活动(CA1区)进行细胞外记录。向MS-DS注射利多卡因导致海马神经元活动和脑电图中θ调制的完全抑制。大多数单位的背景活动平均频率没有变化,但在有限的一组高频神经元(假定的抑制性细胞)中显著增加。向中缝内侧注射,即向MS-DB和海马提供5-羟色胺能传入纤维的来源,随后θ调制的规律性和频率增加,出现了另一组具有节律性调制的神经元,并在海马脑电图中出现了持续的θ波。大多数细胞的放电平均频率及其规律性显著增加。数据证实了中缝核内侧对产生θ波的隔-海马系统存在紧张性抑制控制,在这方面它可被视为中脑网状结构的拮抗剂。

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