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脑干在静止和流动水中对正弦波刺激的侧线反应。

Brainstem lateral line responses to sinusoidal wave stimuli in still and running water.

作者信息

Kröther Sophia, Mogdans Joachim, Bleckmann Horst

机构信息

Institut für Zoologie, Universität Bonn, Poppelsdorfer Schloss, D-53115 Bonn, Germany.

出版信息

J Exp Biol. 2002 May;205(Pt 10):1471-84. doi: 10.1242/jeb.205.10.1471.

Abstract

The fish lateral line consists of superficial and canal neuromasts. In still water, afferent fibers from both types of neuromast respond equally well to a sinusoidally vibrating sphere. In running water, responses to a vibrating sphere of fibers innervating superficial neuromasts are masked. In contrast, responses of fibers innervating canal neuromasts are barely altered. It is not known whether this functional subdivision of the peripheral lateral line is maintained in the brain. We studied the effect of running water on the responses to a 50 Hz vibrating sphere of single units in the medial octavolateralis nucleus (MON) in goldfish Carassius auratus. The MON is the first site of central processing of lateral line information. Three types of units were distinguished. Type I units (N=27) were flow-sensitive; their ongoing discharge rates either increased or decreased in running water, and as a consequence, responses of these units to the vibrating sphere were masked in running water. Type II units (N=7) were not flow-sensitive; their ongoing discharge rates were comparable in still and running water, so their responses to the vibrating sphere were not masked in running water. Type III units (N=7) were also not flow-sensitive, but their responses to the vibrating sphere were nevertheless masked in running water. Although interactions between the superficial and canal neuromast system cannot be ruled out, our data indicate that the functional subdivision of the lateral line periphery is maintained to a large degree at the level of the medial octavolateralis nucleus.

摘要

鱼类的侧线由表面神经丘和管道神经丘组成。在静水中,来自这两种神经丘的传入纤维对正弦振动球体的反应同样良好。在流水中,支配表面神经丘的纤维对振动球体的反应被掩盖。相比之下,支配管道神经丘的纤维的反应几乎没有改变。尚不清楚外周侧线的这种功能细分在大脑中是否得以维持。我们研究了流水对金鱼(Carassius auratus)内侧听侧线核(MON)中单个神经元对50 Hz振动球体反应的影响。MON是侧线信息中枢处理的首个位点。区分出了三种类型的神经元。I型神经元(N = 27)对水流敏感;它们在流水中的持续放电率要么增加要么降低,因此,这些神经元在流水中对振动球体的反应被掩盖。II型神经元(N = 7)对水流不敏感;它们在静水和流水中的持续放电率相当,所以它们在流水中对振动球体的反应没有被掩盖。III型神经元(N = 7)同样对水流不敏感,但它们在流水中对振动球体的反应仍然被掩盖。尽管不能排除表面神经丘系统和管道神经丘系统之间的相互作用,但我们的数据表明,侧线外周的功能细分在很大程度上在内侧听侧线核水平得以维持。

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