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线翎电鳗中脑的单单位活动。

Single unit activity in the mesencephalon of Sternarchus.

作者信息

Schlegel P

出版信息

J Physiol (Paris). 1979;75(4):421-8.

PMID:512974
Abstract

Action potentials evoked in a phase-locked 1 : 1 relationship by natural electric organ discharges (EOD) were recorded extracellularly and intracellularly from single mesencephalic magnocellular nucleus units in the high frequency electric fish Sternarchus albifrons (Gymnotidae). This activity has been shown to be the result of an extrinsic feedback of the electrosensory system and is probably important for the socalled jamming avoidance response triggered artificial electric pulses when delivered into the water in a 1 : 1 relationship at intensities higher than the EOD. In the same way, artificial pulses of frequency near EOD could either drive or, due to beats, greatly disturb the regular firing of the units. More insight into the neural mechanism was yielded by single EOD-triggered shocks provoking a failure in firing of certain action potentials of the series and causing long-lasting (10-20 ms) accelerations and decelerations of the regular EOD-evoked firing (transient disturbance). Intracellular stimulations show similar effects. The biological significance of this neural mechanism for the fish's electroperception and JAR is discussed.

摘要

在高频电鱼白边尾电鳗(裸背电鳗科)中,通过自然放电(EOD)以1:1锁相关系诱发的动作电位,从单个中脑大细胞核单位进行了细胞外和细胞内记录。这种活动已被证明是电感觉系统外部反馈的结果,并且可能对于所谓的干扰回避反应很重要,当以高于EOD的强度以1:1关系将人工电脉冲送入水中时,该反应会触发人工电脉冲。同样,频率接近EOD的人工脉冲要么驱动这些单位的正常放电,要么由于拍频而极大地干扰其正常放电。通过单个EOD触发的电击,对神经机制有了更多的了解,这种电击会导致该系列中某些动作电位的发放失败,并导致由EOD诱发的正常发放出现持续较长时间(10 - 20毫秒)的加速和减速(短暂干扰)。细胞内刺激显示出类似的效果。本文讨论了这种神经机制对鱼类电感知和干扰回避反应的生物学意义。

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