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大鼠梨状皮质中的振荡性快波活动:与嗅觉和行为的关系。

Oscillatory fast wave activity in the rat pyriform cortex: relations to olfaction and behavior.

作者信息

Zibrowski E M, Vanderwolf C H

机构信息

Department of Psychology and Graduate Program in Neuroscience, University of Western Ontario, London, Canada.

出版信息

Brain Res. 1997 Aug 22;766(1-2):39-49. doi: 10.1016/s0006-8993(97)00543-x.

Abstract

Bursts of rhythmical fast waves (> 1 mV, peak frequency approximately 16 Hz; mean frequency approximately 20 Hz) are elicited in the olfactory bulb and pyriform cortex in waking or urethane-anesthetized rats (1.25 g/kg, i.p.) by olfactory stimulation with organic solvents (xylene, toluene, methyl methacrylate, oil of turpentine) or components of anal gland secretions of rat predators (2-propylthietane, weasel; trimethyl thiazoline, red fox). These waves are specifically related to olfaction since they: (a) are blocked when the nares are sealed; (b) are not elicited by non-olfactory stimuli; (c) are unrelated to concurrent motor activity; and (d) can only be elicited in anesthetized-tracheotomized rats when an odorous airstream is drawn through the nasal passages. Pyriform fast waves appear to be somewhat specific to the odors of organic solvents and predators as other strong odors (ammonia, caproic and butyric acids, cadaverine) are ineffective. During natural sleep or after treatment with scopolamine hydrobromide, low voltage pyriform background activity is replaced by larger amplitude, irregular 1-20 Hz waves. The scopolamine-induced waves are not blocked by spontaneous motor activity. We suggest that the pyriform cortex, like the archicortex and the neocortex, receives a cholinergic activating input.

摘要

在清醒或经氨基甲酸乙酯麻醉(腹腔注射1.25 g/kg)的大鼠嗅球和梨状皮质中,通过用有机溶剂(二甲苯、甲苯、甲基丙烯酸甲酯、松节油)或大鼠捕食者肛门腺分泌物成分(2-丙基硫杂环丁烷,鼬;三甲基噻唑啉,赤狐)进行嗅觉刺激,可诱发节律性快波爆发(>1 mV,峰值频率约16 Hz;平均频率约20 Hz)。这些波与嗅觉有特定关系,因为它们:(a) 在鼻孔密封时被阻断;(b) 非嗅觉刺激不能诱发;(c) 与同时发生的运动活动无关;(d) 只有在经气管切开的麻醉大鼠中,当有气味的气流通过鼻腔时才能诱发。梨状快波似乎对有机溶剂和捕食者的气味有些特异性,因为其他强烈气味(氨、己酸和丁酸、尸胺)无效。在自然睡眠期间或用氢溴酸东莨菪碱治疗后,低电压的梨状背景活动被更大振幅、不规则的1 - 20 Hz波所取代。东莨菪碱诱发的波不会被自发运动活动阻断。我们认为,梨状皮质与原皮质和新皮质一样,接受胆碱能激活输入。

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