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一种长颌鱼脑皮层的感觉处理

Sensory processing in the pallium of a mormyrid fish.

作者信息

Prechtl J C, von der Emde G, Wolfart J, Karamürsel S, Akoev G N, Andrianov Y N, Bullock T H

机构信息

Neurobiology Unit, Scripps Institution of Oceanography, University of California San Diego, La Jolla, California 92093, USA.

出版信息

J Neurosci. 1998 Sep 15;18(18):7381-93. doi: 10.1523/JNEUROSCI.18-18-07381.1998.

Abstract

To investigate the functional organization of higher brain levels in fish we test the hypothesis that the dorsal gray mantle of the telencephalon of a mormyrid fish has discrete receptive areas for several sensory modalities. Multiunit and compound field potentials evoked by auditory, visual, electrosensory, and water displacement stimuli in this weakly electric fish are recorded with multiple semimicroelectrodes placed in many tracks and depths in or near telencephalic area dorsalis pars medialis (Dm). Most responsive loci are unimodal; some respond to two or more modalities. Each modality dominates a circumscribed area, chiefly separate. Auditory and electrical responses cluster in the dorsal 500 micrometer of rostral and caudolateral Dm, respectively. Two auditory subdivisions underline specialization of this sense. Mechanoreception occupies a caudal area overlapping electroreception but centered 500 micrometer deeper. Visual responses scatter widely through ventral areas. Auditory, electrosensory, and mechanosensory responses are dominated by a negative wave within the first 50 msec, followed by 15-55 Hz oscillations and a slow positive wave with multiunit spikes lasting from 200 to 500 msec. Stimuli can induce shifts in coherence of certain frequency bands between neighboring loci. Every electric organ discharge command is followed within 3 msec by a large, mainly negative but generally biphasic, widespread corollary discharge. At certain loci large, slow ("deltaF") waves usually precede transient shifts in electric organ discharge rate. Sensory-evoked potentials in this fish pallium may be more segregated than in elasmobranchs and anurans and have some surprising similarities to those in mammals.

摘要

为了研究鱼类大脑高级水平的功能组织,我们检验了一个假设,即一种电鲶鱼端脑的背侧灰质外套对几种感觉模态具有离散的感受区域。我们使用多个半微电极,将其放置在电鲶鱼端脑背侧内侧部(Dm)内或其附近的多个轨迹和深度处,记录由听觉、视觉、电感觉和水位移刺激诱发的多单位和复合场电位。大多数反应位点是单峰的;有些对两种或更多种模态有反应。每种模态都主导一个限定区域,主要是分开的。听觉和电反应分别聚集在吻侧和尾外侧Dm的背侧500微米处。两种听觉细分强调了这种感觉的特化。机械感受占据一个尾侧区域,与电感受重叠,但中心深度更深500微米。视觉反应广泛分布在腹侧区域。听觉、电感觉和机械感觉反应在前50毫秒内以一个负波为主导,随后是15 - 55赫兹的振荡以及一个持续200至500毫秒的带有多单位尖峰的缓慢正波。刺激可诱发相邻位点之间某些频段相干性的变化。每个电器官放电指令在3毫秒内会跟随一个大的、主要为负但通常为双相的广泛伴随放电。在某些位点,大的、缓慢的(“deltaF”)波通常先于电器官放电率的瞬时变化。这种鱼类大脑皮层中的感觉诱发电位可能比鲨鱼和蛙类中的更分离,并且与哺乳动物中的有一些惊人的相似之处。

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