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海马体作为一种嗅觉运动机制:经典解剖学家终究是正确的吗?

The hippocampus as an olfacto-motor mechanism: were the classical anatomists right after all?

作者信息

Vanderwolf C H

机构信息

Graduate Program in Neuroscience, Department of Psychology, University of Western Ontario, London, Ontario, Canada N6A 5C2.

出版信息

Behav Brain Res. 2001 Dec 14;127(1-2):25-47. doi: 10.1016/s0166-4328(01)00354-0.

Abstract

The relations between behavior, olfactory input (monitored by recording the activity of the olfactory mucosa), and the spontaneous field potentials of the dentate gyrus were studied in freely moving rats. Bursts of 30-80 Hz (gamma) waves were elicited in the dentate gyrus when a rat sniffed at a variety of objects but were not elicited by auditory, somesthetic, or visual inputs and were not related to the occurrence of locomotion. The presence of gamma wave activity was associated with an enhancement of the population spike elicited in the dentate gyrus by stimulation of the perforant path. Odorized air blown into a nostril via a cannula, inserted under light urethane anesthesia, elicited a gamma wave response bilaterally in the dentate gyrus. These and other data were reviewed to support the general hypothesis that the hippocampus is primarily an olfacto-motor mechanism and does not play any unique role in learning and memory, cognitive mapping, or emotion. The role of the hippocampus in the control of some forms of motor activity is supported by numerous anatomical and electrophysiological studies, studies of the effect of hippocampal lesions on behavior, and studies of the effects of electrical or chemical stimulation of the hippocampus on behavior.

摘要

在自由活动的大鼠中,研究了行为、嗅觉输入(通过记录嗅黏膜的活动进行监测)与齿状回的自发电场电位之间的关系。当大鼠嗅闻各种物体时,齿状回会诱发30 - 80赫兹(γ)的波爆发,但听觉、躯体感觉或视觉输入不会诱发这种波爆发,且其与运动的发生无关。γ波活动的存在与通过刺激穿通路径在齿状回诱发的群体锋电位增强有关。在轻度乌拉坦麻醉下插入插管,通过插管将有气味的空气吹入鼻孔,会在齿状回双侧诱发γ波反应。对这些及其他数据进行了综述,以支持这样一个总体假设:海马体主要是一种嗅觉 - 运动机制,在学习与记忆、认知图谱或情感方面不发挥任何独特作用。海马体在控制某些形式的运动活动中的作用得到了众多解剖学和电生理学研究、海马体损伤对行为影响的研究以及海马体电刺激或化学刺激对行为影响的研究的支持。

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