海洋尾蚴尾部的自发电活动和尖峰。

ISRN Parasitology Pub Date : 2013-08-19 eCollection Date: 2013-01-01 DOI:10.5402/2013/123108
O O Tolstenkov, M I Zhukovskaya, V V Prokofiev, M K S Gustafsson
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引用次数: 2

摘要

用不同类型的玻璃微电极记录了两种海洋尾蚴(隐尾虫和长尾虫)的自发电活动。发现了低幅慢局部场电位(sLFPs)和高幅快速动作电位(APs)。slfp的形状在不同的物种中是不同的,并且与游泳的类型有关。在尾蚴中首次记录到快速高振幅ap。幼虫游动模式中包含的ap数量有限,这表明棘突神经元在启动尾蚴运动模式中起着关键作用,需要进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Spontaneous Electrical Activity and Spikes in the Tail of Marine Cercariae.

Spontaneous Electrical Activity and Spikes in the Tail of Marine Cercariae.

Spontaneous Electrical Activity and Spikes in the Tail of Marine Cercariae.

Spontaneous electrical activity is recorded in two species of marine cercariae, Cryptocotyle lingua and Himasthla elongata, with different types of swimming-by glass microelectrode recordings. Slow local field potentials (sLFPs) of low amplitude and fast high amplitude action potentials (APs) are found. The shape of the sLFPs is different in the species and correlates with the type of swimming. Fast high amplitude APs are recorded for the first time in cercariae. The limited number of APs included in the swimming pattern of larva suggests a key role for the spiking neurons in initiating the motility pattern in the cercaria and needs further research.

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