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抽回反应习惯化对其他抽回行为的影响:线虫秀丽隐杆线虫中习惯化的定位

Effects of tap withdrawal response habituation on other withdrawal behaviors: the localization of habituation in the nematode Caenorhabditis elegans.

作者信息

Wicks S R, Rankin C H

机构信息

Program in Neuroscience, University of British Columbia, Vancouver, Canada.

出版信息

Behav Neurosci. 1997 Apr;111(2):342-53. doi: 10.1037//0735-7044.111.2.342.

Abstract

Four experiments were conducted to identify the possible loci of habituation of the nematode tap withdrawal response (TWR) by characterizing the effects of TWR habituation on other nonmechanosensory withdrawal behaviors that are mediated by overlapping sets of neurons. Experiments 1-2 established behavioral and anatomical relationships between spontaneous and tap-induced backward locomotion in the worm. Experiment 3 demonstrated that habituation of the TWR affected neither the magnitude nor frequency of spontaneous reversal activity. Experiment 4 extended this result to an evoked response: Habituation of the TWR had no effect on reversals evoked by a thermal stimulus. These studies, which show that the loci of change associated with habituation of the TWR are presynaptic to the interneurons and motor neurons that control locomotion, probably distributed among the mechanosensory neurons, illustrate that a complete understanding of plasticity requires a knowledge of both the anatomical and molecular substrates of change.

摘要

进行了四项实验,通过表征线虫轻敲撤离反应(TWR)的习惯化对由重叠神经元组介导的其他非机械感觉撤离行为的影响,来确定TWR习惯化的可能位点。实验1-2建立了蠕虫自发和轻敲诱导的向后运动之间的行为和解剖学关系。实验3表明,TWR的习惯化既不影响自发反转活动的幅度也不影响其频率。实验4将这一结果扩展到诱发反应:TWR的习惯化对热刺激诱发的反转没有影响。这些研究表明,与TWR习惯化相关的变化位点在控制运动的中间神经元和运动神经元的突触前,可能分布在机械感觉神经元之间,说明对可塑性的完整理解需要了解变化的解剖学和分子基础。

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