首页> 外文期刊>The Journal of Experimental Biology >Role of prey-capture experience in the development of the escape response in the squid Loligo opalescens: A physiological correlate in an identified neuron
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Role of prey-capture experience in the development of the escape response in the squid Loligo opalescens: A physiological correlate in an identified neuron

机译:捕获捕获经验在鱿鱼Loligo opalescens逃避反应的发展中的作用:在已识别的神经元中的生理相关。

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摘要

Although extensively used for biophysical studies, the squid giant axon system remains largely unexplored in regard to in vivo function and modulation in any biologically relevant context, Here we show that successful establishment of the recruitment pattern for the giant axon in the escape response elicited by a brief electrical stimulus depends on prey-capture experience early in life, Juvenile squid fed only slow-moving, easy-to-capture prey items (Artemia salina) develop deficits in coordinating activity in the giant axon system with that of a parallel set of non-giant motor axons during escape responses, These deficits are absent in cohorts fed fast-moving, challenging prey items (copepods), These results suggest that the acquisition of inhibitory control over the giant axon system is experience-dependent and that both prey-capture and escape behavior depend on this control. [References: 36]
机译:尽管鱿鱼巨型轴突系统已广泛用于生物物理研究,但在任何生物学相关的背景下,在体内功能和调节方面,很大程度上仍未得到研究。在这里,我们表明,巨轴突的募集模式成功建立了逃避反应。短暂的电刺激取决于早年捕获猎物的经验,仅喂食缓慢移动且易于捕获的猎物(卤虫)的未成年鱿鱼在巨型轴突系统中的协调活动中出现不足,而在平行轴突中则缺乏这种行为。逃生反应时的超大型运动轴突,在快速进食,具有挑战性的猎物(足足类)的同类群中不存在这些缺陷,这些结果表明,对巨型轴突系统的抑制性控制的获得取决于经验,并且这两种猎物都能捕获逃逸行为取决于此控件。 [参考:36]

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