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海马向脚桥核的信号传递及其受伏隔核中多巴胺D2受体的调节:一项电生理和行为学研究。

Hippocampal signal transmission to the pedunculopontine nucleus and its regulation by dopamine D2 receptors in the nucleus accumbens: an electrophysiological and behavioural study.

作者信息

Yang C R, Mogenson G J

机构信息

Department of Physiology, University of Western Ontario, London, Canada.

出版信息

Neuroscience. 1987 Dec;23(3):1041-55. doi: 10.1016/0306-4522(87)90179-5.

Abstract

The integrative role of the nucleus accumbens and subpallidal area in relaying hippocampal signals to the mesencephalic locomotor region in the brainstem was investigated electrophysiologically in urethan-anaesthetized rats. A behavioural study of the functional connections was also performed in freely moving rats. In the electrophysiological experiments, subpallidal output neurons to the pedunculopontine nucleus and the adjacent ventral gray were first identified by their antidromic responses to electrical stimulation of the pedunculopontine nucleus. Hippocampal stimulation was then shown to inhibit orthodromically some of these subpallidal neurons. The inhibitory response was attenuated following microinjection of a dopamine D2 agonist (LY 171555), but not a D1 agonist (SKF 38393), into the accumbens. This suggests that signal transmission from the hippocampus to the subpallidal output neurons to the pedunculopontine nucleus is modulated by a D2 receptor-mediated mechanism in the nucleus accumbens. Injections of N-methyl-D-aspartate into the ventral subiculum of the hippocampus resulted in a threefold increase in locomotor responses. Injection of a D2 agonist into the accumbens reduced the hyperkinetic response dose-dependently and suggests that D2 receptors regulate locomotor responses initiated by the hippocampal-accumbens pathway. Injection of nipecotic acid, a GABA uptake inhibitor, into the subpallidal area or of procaine, a neural transmission blocker, into the region of the pedunculopontine nucleus, also reduced significantly the hippocampal-induced hyperkinetic response. These results provide evidence of limbic (e.g. hippocampus) influences on locomotor activity by way of nucleus accumbens-subpallidal-pedunculopontine nucleus connections which may contribute to adaptive behaviour. Signal transmission from the hippocampus may be regulated by a dopamine D2 receptor mechanism in the accumbens, presumably mediated by the converging mesolimbic dopaminergic input from the ventral tegmental area.

摘要

在乌拉坦麻醉的大鼠中,采用电生理学方法研究了伏隔核和苍白球下区在将海马信号传递至脑干中脑运动区过程中的整合作用。还在自由活动的大鼠中进行了功能连接的行为学研究。在电生理学实验中,首先通过对脚桥核进行电刺激的逆向反应来识别向脚桥核和相邻腹侧灰质投射的苍白球下输出神经元。然后发现海马刺激能正向抑制其中一些苍白球下神经元。向伏隔核微量注射多巴胺D2激动剂(LY 171555)后,抑制反应减弱,但注射D1激动剂(SKF 38393)后则无此现象。这表明从海马到向脚桥核投射的苍白球下输出神经元的信号传递受伏隔核中D2受体介导机制的调节。向海马腹侧下托注射N-甲基-D-天冬氨酸导致运动反应增加三倍。向伏隔核注射D2激动剂能剂量依赖性地降低运动亢进反应,提示D2受体调节由海马-伏隔核通路引发的运动反应。向苍白球下区注射γ-氨基丁酸摄取抑制剂尼克酸或向脚桥核区域注射神经传递阻滞剂普鲁卡因,也能显著降低海马诱发的运动亢进反应。这些结果证明了边缘系统(如海马)通过伏隔核-苍白球下-脚桥核连接对运动活动产生影响,这可能有助于适应性行为。海马的信号传递可能受伏隔核中多巴胺D2受体机制的调节,推测是由腹侧被盖区汇聚的中脑边缘多巴胺能输入介导的。

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