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裸臀鱼电感觉叶中形态学鉴定细胞的生理学与可塑性

Physiology and plasticity of morphologically identified cells in the mormyrid electrosensory lobe.

作者信息

Bell C C, Caputi A, Grant K

机构信息

R. S. Dow Neurological Sciences Institute, Legacy Good Samaritan Hospital and Medical Center, Portland, Oregon 97209, USA.

出版信息

J Neurosci. 1997 Aug 15;17(16):6409-23. doi: 10.1523/JNEUROSCI.17-16-06409.1997.

Abstract

The electrosensory lobe (ELL) of mormyrid electric fish is the first stage in the central processing of sensory input from electroreceptors. The responses of cells in ELL to electrosensory input are strongly affected by corollary discharge signals associated with the motor command that drives the electric organ discharge (EOD). This study used intracellular recording and staining to describe the physiology of three major cell types in the mormyrid ELL: the medium ganglion cell, the large ganglion cell, and the large fusiform cell. The medium ganglion cell is a Purkinje-like interneuron, whereas the large ganglion and large fusiform cells are efferent neurons that convey electrosensory information to higher stages of the system. Clear differences were observed among the three cell types. Medium ganglion cells showed two types of spikes, a small narrow spike and a large broad spike that were probably of axonal and dendro-somatic origin, respectively, whereas the large ganglion and large fusiform cells showed only large narrow spikes. Most of the medium ganglion cells and all of the large ganglion cells were inhibited by electrosensory stimuli in the center of their receptive fields, whereas the large fusiform cells were excited by such stimuli. Responses to the EOD corollary discharge were different in the three cell types, and these responses underwent plastic changes after a few minutes of pairing with an electrosensory stimulus. Plastic changes were also observed in medium and large ganglion cells after the corollary discharge was paired with depolarizing, intracellular current pulses.

摘要

长颌鱼科电鱼的电感觉叶(ELL)是电感受器感觉输入中枢处理的第一阶段。ELL中细胞对电感觉输入的反应受到与驱动电器官放电(EOD)的运动指令相关的伴随放电信号的强烈影响。本研究采用细胞内记录和染色来描述长颌鱼科ELL中三种主要细胞类型的生理学特性:中型神经节细胞、大型神经节细胞和大型梭形细胞。中型神经节细胞是一种类似浦肯野细胞的中间神经元,而大型神经节细胞和大型梭形细胞是将电感觉信息传递到系统更高阶段的传出神经元。在这三种细胞类型之间观察到了明显的差异。中型神经节细胞表现出两种类型的尖峰,一个小而窄的尖峰和一个大而宽的尖峰,可能分别起源于轴突和树突-体细胞,而大型神经节细胞和大型梭形细胞只表现出大而窄的尖峰。大多数中型神经节细胞和所有大型神经节细胞在其感受野中心受到电感觉刺激的抑制,而大型梭形细胞则受到此类刺激的兴奋。三种细胞类型对EOD伴随放电的反应不同,并且在与电感觉刺激配对几分钟后,这些反应发生了可塑性变化。在伴随放电与去极化的细胞内电流脉冲配对后,中型和大型神经节细胞也观察到了可塑性变化。

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