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变异性神经元参与刻板运动程序。

Variable neuronal participation in stereotypic motor programs.

机构信息

Department of Cell Biology and Anatomy, The Chicago Medical School, Rosalind Franklin University of Medicine and Science, North Chicago, Illinois, United States of America.

出版信息

PLoS One. 2012;7(7):e40579. doi: 10.1371/journal.pone.0040579. Epub 2012 Jul 16.

Abstract

To what extent are motor networks underlying rhythmic behaviors rigidly hard-wired versus fluid and dynamic entities? Do the members of motor networks change from moment-to-moment or from motor program episode-to-episode? These are questions that can only be addressed in systems where it is possible to monitor the spiking activity of networks of neurons during the production of motor programs. We used large-scale voltage-sensitive dye (VSD) imaging followed by Independent Component Analysis spike-sorting to examine the extent to which the neuronal network underlying the escape swim behavior of Tritonia diomedea is hard-wired versus fluid from a moment-to-moment perspective. We found that while most neurons were dedicated to the swim network, a small but significant proportion of neurons participated in a surprisingly variable manner. These neurons joined the swim motor program late, left early, burst only on some cycles or skipped cycles of the motor program. We confirmed that this variable neuronal participation was not due to effects of the VSD by finding such neurons with intracellular recording in dye-free saline. Further, these neurons markedly varied their level of participation in the network from swim episode-to-episode. The generality of such unreliably bursting neurons was confirmed by their presence in the rhythmic escape networks of two other molluscan species, Tritonia festiva and Aplysia californica. Our observations support a view that neuronal networks, even those underlying rhythmic and stereotyped motor programs, may be more variable in structure than widely appreciated.

摘要

从多大程度上讲,产生节律性行为的运动网络是固定不变的硬性连接,还是灵活多变的实体?运动网络的成员是时刻变化,还是在运动程序的各个片段之间变化?这些问题只有在有可能监测到运动程序产生过程中神经元网络的尖峰活动的系统中才能得到解答。我们使用了大规模电压敏感染料 (VSD) 成像,然后进行独立成分分析尖峰排序,从即时的角度来研究构成 Tritonia diomedea 逃避游泳行为的神经元网络在多大程度上是固定不变的,还是灵活多变的。我们发现,虽然大多数神经元都专门用于游泳网络,但一小部分神经元以惊人的方式参与其中,且比例虽小但却具有统计学意义。这些神经元很晚才加入游泳运动程序,很早就离开了,仅在一些周期上爆发,或者跳过运动程序的周期。我们通过在无染料盐水中进行细胞内记录来证实,这种可变的神经元参与不是由于 VSD 的影响,从而找到了这样的神经元。此外,这些神经元在从游泳片段到游泳片段的过程中,其网络参与程度明显不同。在另外两种软体动物 Tritonia festiva 和 Aplysia californica 的节律性逃避网络中也存在这种神经元,这证实了这种不可靠爆发神经元的普遍性。我们的观察结果支持这样一种观点,即神经元网络,甚至是那些构成节律性和刻板运动程序的网络,其结构可能比人们普遍认为的更为多变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f7c/3398049/445d5bd3d6c9/pone.0040579.g001.jpg

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