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长颌鱼电感觉叶的 Mormyromast 区。II. 对来自中枢源输入的反应。

The mormyromast region of the mormyrid electrosensory lobe. II. Responses to input from central sources.

作者信息

Mohr Claudia, Roberts Patrick D, Bell Curtis C

机构信息

Neurological Sciences Institute, Oregon Health and Sciences University, Beaverton 97006, USA.

出版信息

J Neurophysiol. 2003 Aug;90(2):1211-23. doi: 10.1152/jn.00213.2003.

Abstract

This is the second in a series of two papers on the mormyromast regions of the electrosensory lobe (ELL) of mormyrid electric fish. In this study, we examined the effects of artificial stimulation of two of the three major central inputs to ELL on different morphologically identified cell types of ELL. The three major central inputs to ELL are the eminentia granularis posterior, the juxtalobar nucleus, and the preeminential nucleus. We stimulated the juxtalobar and preeminential nuclei. We compared the effects of such stimulation with effects of the electric organ corollary discharge (EOCD) on the same cells to understand the origins of EOCD effects in ELL. Responses to juxtalobar stimulation were different in different cell types and remarkably similar to corollary discharge responses in the same cells. In addition, responses to juxtalobar stimulation were consistently depressed when the stimulus was delivered immediately after the naturally occurring EOCD response. These findings indicate that the juxtalobar nucleus is a major source of the EOCD responses of ELL cells. In contrast, preeminential stimulation evoked similar responses in medium ganglionic cells, and the two types of efferent cells that were quite different from the EOCD responses of these cells, suggesting that the preeminential nucleus is less important than the juxtalobar nucleus in determining the EOCD responses of ELL cells. Preeminential responses of medium ganglionic and efferent cells consisted of a short-latency excitatory postsynaptic potential (EPSP) followed by a long-lasting inhibitory postsynaptic potential (IPSP). Both the EPSPs and IPSPs were facilitated when brief bursts of closely spaced stimuli were delivered.

摘要

这是关于裸背电鳗科电鱼电感觉叶(ELL)的电丘区域的系列两篇论文中的第二篇。在本研究中,我们研究了对ELL三个主要中枢输入中的两个进行人工刺激,对ELL不同形态学识别细胞类型的影响。ELL的三个主要中枢输入是颗粒丘后部、叶旁核和前丘核。我们刺激了叶旁核和前丘核。我们将这种刺激的效果与电器官伴随放电(EOCD)对相同细胞的效果进行比较,以了解ELL中EOCD效应的起源。叶旁核刺激在不同细胞类型中的反应不同,并且与相同细胞中的伴随放电反应非常相似。此外,当在自然发生的EOCD反应后立即给予刺激时,对叶旁核刺激的反应持续受到抑制。这些发现表明叶旁核是ELL细胞EOCD反应的主要来源。相比之下,前丘核刺激在中型神经节细胞中引发了类似的反应,以及两种与这些细胞的EOCD反应有很大不同的传出细胞类型,这表明前丘核在决定ELL细胞的EOCD反应方面不如叶旁核重要。中型神经节细胞和传出细胞的前丘核反应包括一个短潜伏期兴奋性突触后电位(EPSP),随后是一个持久的抑制性突触后电位(IPSP)。当给予紧密间隔的短暂刺激脉冲时,EPSP和IPSP都会增强。

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