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电鲶(Malapterurus electricus)脑干神经元向颈脊髓中巨大电运动神经元的投射。

Projection of brain stem neurons to the giant electromotoneurons in the cervical spinal cord of the electric catfish Malapterurus electricus.

作者信息

Schikorski T, Braun N, Zimmermann H

机构信息

Zoologisches Institut, J. W. Goethe Universität, Frankfurt am Main, Germany.

出版信息

Brain Behav Evol. 1994;43(6):306-18. doi: 10.1159/000113642.

Abstract

Two giant electromotoneurons located within the cervical spinal cord form the centerpiece of the electromotor system in the electric catfish Malapterurus electricus. The cytoarchitectural organization suggests a high degree of input convergence onto the electromotoneurons. In order to obtain insights into the connectivities of the electromotor system, pre-neurons of the electromotoneurons within the brain stem and the spinal cord were labelled by application of FITC-dextran and horseradish peroxidase onto the surface of a single electromotoneuron. Our results show that the electromotoneurons receive their main inputs from the nucleus profundus mesencephali within the tegmentum and from large neurons of the medial reticular formation. Both nuclei possess an intimate connection to the optic tectum which mediates orientation responses. This pathway to the electromotoneurons could be instrumental in eliciting electric organ discharge during prey catching. The electric avoidance response in turn could be mediated by the Mauthner neurons which are also labelled. In addition to these neurons, cells of the nucleus fasciculi longitudinalis medialis, the descending octaval nucleus and the nucleus funicularis medialis were labelled. As compared to the corresponding neurons in ictalurid catfish, none of these neurons displays any alteration in its general morphology. It is concluded that the evolution of the electric organ from muscle tissue and the development of a central control system of the electromotor response in Malapterurus involved a minimum of alterations in central nervous system circuitry. In contrast to many other electric fishes the electromotor control is mainly accomplished at the level of the electromotoneurons.

摘要

位于颈脊髓内的两个巨大电运动神经元构成了电鲶鱼(电鲇)电运动系统的核心部分。细胞结构组织表明,电运动神经元上存在高度的输入汇聚。为了深入了解电运动系统的连接情况,通过将异硫氰酸荧光素 - 葡聚糖和辣根过氧化物酶应用于单个电运动神经元表面,对脑干和脊髓内电运动神经元的前神经元进行了标记。我们的结果表明,电运动神经元主要从被盖内的中脑深部核以及内侧网状结构的大神经元接收输入。这两个核都与介导定向反应的视顶盖有着密切的联系。这条通向电运动神经元的通路可能有助于在捕食过程中引发电器官放电。而电回避反应反过来可能由同样被标记的莫特纳尔神经元介导。除了这些神经元外,内侧纵束核、下行听神经核和内侧索状核中的细胞也被标记。与鲇形目鲶鱼中的相应神经元相比,这些神经元的一般形态均未显示出任何改变。可以得出结论,电鲶鱼中电器官从肌肉组织的进化以及电运动反应的中央控制系统的发育,涉及中枢神经系统电路的最小改变。与许多其他电鱼不同,电运动控制主要在电运动神经元水平上完成。

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