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运动系统中局部感觉信号对节段间效应的主导作用:实验

Dominance of local sensory signals over inter-segmental effects in a motor system: experiments.

作者信息

Borgmann Anke, Toth Tibor I, Gruhn Matthias, Daun-Gruhn Silvia, Büschges Ansgar

机构信息

Department of Animal Physiology, Institute of Zoology, University of Cologne, Zülpicher Str. 47b, 50674 Köln, Germany.

出版信息

Biol Cybern. 2011 Dec;105(5-6):399-411. doi: 10.1007/s00422-012-0473-y.

Abstract

Legged locomotion requires that information local to one leg, and inter-segmental signals coming from the other legs are processed appropriately to establish a coordinated walking pattern.However, very little is known about the relative importance of local and inter-segmental signals when they converge upon the central pattern generators (CPGs) of different leg joints.We investigated this question on the CPG of the middle leg coxa–trochanter (CTr)-joint of the stick insect which is responsible for lifting and lowering the leg.We used a semi-intact preparation with an intact front leg stepping on a treadmill, and simultaneously stimulated load sensors of the middle leg.We found that middle leg load signals induce bursts in the middle leg depressor motoneurons(MNs). The same local load signals could also elicit rhythmic activity in the CPG of the middle leg CTr-joint when the stimulation of middle leg load sensors coincided with front leg stepping. However, the influence of front leg stepping was generally weak such that front leg stepping alone was only rarely accompanied by switching between middle leg levator and depressor MN activity. We therefore conclude that the impact of the local sensory signals on the levator–depressor motor system is stronger than the inter-segmental influence through front leg stepping.

摘要

腿部运动要求对来自一条腿的局部信息以及来自其他腿的节间信号进行适当处理,以建立协调的行走模式。然而,当局部信号和节间信号汇聚到不同腿部关节的中枢模式发生器(CPG)时,它们的相对重要性却鲜为人知。我们针对竹节虫中腿基节-转节(CTr)关节的CPG研究了这个问题,该关节负责腿部的抬起和放下。我们采用了一种半完整的制备方法,让一条完整的前腿在跑步机上行走,同时刺激中腿的负载传感器。我们发现,中腿负载信号会在中腿降肌运动神经元(MNs)中诱发爆发。当中腿负载传感器的刺激与前腿行走同步时,相同的局部负载信号也能在中腿CTr关节的CPG中引发节律性活动。然而,前腿行走的影响通常较弱,以至于仅前腿行走时,中腿提肌和降肌MN活动之间的转换很少发生。因此,我们得出结论,局部感觉信号对提肌-降肌运动系统的影响要强于通过前腿行走产生的节间影响。

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