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向中缝核注射8-OH-DPAT后内侧隔区单位的放电特性

Medial septal unit firing characteristics following injections of 8-OH-DPAT into the median raphe nucleus.

作者信息

Kinney G G, Kocsis B, Vertes R P

机构信息

Center for Complex Systems, Florida Atlantic University, Boca Raton 33431, USA.

出版信息

Brain Res. 1996 Feb 5;708(1-2):116-22. doi: 10.1016/0006-8993(95)01296-6.

Abstract

Extracellular single-unit recording techniques were used to examine the firing characteristics of neurons in the medial septum/diagnol band of Broca complex (MS/DB) following injections of the 5-HT1A agonist, 8-OH-DPAT, into the median raphe nucleus (MRN) of urethane-anesthetized rats. It had previously been shown that MRN injections of 8-OH-DPAT produce hippocampal theta rhythm. Injections of 8-OH-DPAT into the MRN produced a change in firing characteristics of MS/DB neurons from an irregular discharge to a pattern of rhythmical bursting in synchrony with hippocampal theta rhythm. Cross-correlational and coherence analyses demonstrated that the rhythmical firing pattern of MS/DB neurons strongly correlated with rhythmical fluctuations in the hippocampal EEG during periods of hippocampal theta produced by 8-OH-DPAT injections, but not during baseline conditions (i.e. hippocampal desynchronization). The results suggest that MRN control of the hippocampal EEG is modulated by the MS/DB. Serotonergic projections from the MRN to the MS/DB may normally act to inhibit the rhythmical bursting of MS/DB neurons, thereby producing hippocampal desynchronization. Suppression of MRN 5-HT neurons by MRN injections of 8-OH-DPAT would disinhibit MS/DB neurons, allowing them to burst rhythmically and thereby produce hippocampal theta rhythm.

摘要

采用细胞外单单位记录技术,在给乌拉坦麻醉的大鼠中缝正中核(MRN)注射5-羟色胺1A(5-HT1A)激动剂8-羟基二丙基氨基四氢萘(8-OH-DPAT)后,检测布罗卡复合体内侧隔区/斜角带(MS/DB)中神经元的放电特征。此前已有研究表明,向MRN注射8-OH-DPAT可产生海马θ节律。向MRN注射8-OH-DPAT后,MS/DB神经元的放电特征发生变化,从不规则放电转变为与海马θ节律同步的节律性爆发模式。互相关分析和相干分析表明,在8-OH-DPAT注射产生海马θ节律期间,MS/DB神经元的节律性放电模式与海马脑电图的节律性波动密切相关,但在基线条件下(即海马去同步化)则不然。结果表明,MRN对海马脑电图的控制受MS/DB调节。从MRN到MS/DB的5-羟色胺能投射通常可能起到抑制MS/DB神经元节律性爆发的作用,从而产生海马去同步化。向MRN注射8-OH-DPAT对MRN 5-羟色胺能神经元的抑制作用会解除对MS/DB神经元的抑制,使其能够有节律地爆发,从而产生海马θ节律。

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