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选择性抑制介导运动神经元池的顺序性募集。

Selective Inhibition Mediates the Sequential Recruitment of Motor Pools.

作者信息

Zwart Maarten F, Pulver Stefan R, Truman James W, Fushiki Akira, Fetter Richard D, Cardona Albert, Landgraf Matthias

机构信息

HHMI Janelia Research Campus, Ashburn, VA 20147, USA; Department of Zoology, University of Cambridge, Cambridge CB2 3EJ, UK.

HHMI Janelia Research Campus, Ashburn, VA 20147, USA.

出版信息

Neuron. 2016 Aug 3;91(3):615-28. doi: 10.1016/j.neuron.2016.06.031. Epub 2016 Jul 14.

Abstract

Locomotor systems generate diverse motor patterns to produce the movements underlying behavior, requiring that motor neurons be recruited at various phases of the locomotor cycle. Reciprocal inhibition produces alternating motor patterns; however, the mechanisms that generate other phasic relationships between intrasegmental motor pools are unknown. Here, we investigate one such motor pattern in the Drosophila larva, using a multidisciplinary approach including electrophysiology and ssTEM-based circuit reconstruction. We find that two motor pools that are sequentially recruited during locomotion have identical excitable properties. In contrast, they receive input from divergent premotor circuits. We find that this motor pattern is not orchestrated by differential excitatory input but by a GABAergic interneuron acting as a delay line to the later-recruited motor pool. Our findings show how a motor pattern is generated as a function of the modular organization of locomotor networks through segregation of inhibition, a potentially general mechanism for sequential motor patterns.

摘要

运动系统产生多样的运动模式以产生行为背后的动作,这要求运动神经元在运动周期的各个阶段被募集。交互抑制产生交替的运动模式;然而,在节段内运动神经元池之间产生其他相位关系的机制尚不清楚。在这里,我们使用包括电生理学和基于连续切片电子显微镜(ssTEM)的电路重建在内的多学科方法,研究果蝇幼虫中的一种这样的运动模式。我们发现,在运动过程中依次被募集的两个运动神经元池具有相同的兴奋性特性。相反,它们从不同的运动前电路接收输入。我们发现,这种运动模式不是由差异性兴奋性输入编排的,而是由一个GABA能中间神经元作为延迟线作用于较晚被募集的运动神经元池来编排的。我们的研究结果表明,一种运动模式是如何通过抑制的分离作为运动网络模块化组织的函数而产生的,这是一种用于顺序运动模式的潜在通用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b87c/4980426/1ce70a2654b0/gr1.jpg

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