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在竹节虫腿部肌肉控制系统中,负载信号处理的节段特异性取决于行走方向。

Segment specificity of load signal processing depends on walking direction in the stick insect leg muscle control system.

作者信息

Akay Turgay, Ludwar Björn Ch, Göritz Marie L, Schmitz Josef, Büschges Ansgar

机构信息

Department of Animal Physiology, Zoological Institute, University of Cologne, 50923 Cologne, Germany.

出版信息

J Neurosci. 2007 Mar 21;27(12):3285-94. doi: 10.1523/JNEUROSCI.5202-06.2007.

Abstract

In terrestrial locomotion, sensory feedback from load sensors is important for altering ongoing motor output on a step-by-step basis. We investigated the influence of load signals from the leg on motoneuron pools of the thorax-coxa (ThC) joint in the stick insect walking system. Load sensors were stimulated during rhythmic, alternating activity in protractor coxae (ProCx) and retractor coxae (RetCx) motoneuron pools. Alternating activity in the segment of interest was induced by mechanical stimulation of the animal or pharmacological activation of the isolated thoracic ganglia. Load signals from the legs altered the timing of ThC motoneuron activity by resetting and entraining the activity of the central rhythm generating network of the ThC joint. In the front and middle legs, load signals induced or promoted RetCx activity and decreased or terminated ProCx activity. In the hindleg, reverse transitions were elicited, with increasing load terminating RetCx and initiating ProCx activity. Studies in semi-intact walking animals showed that the effect of load on the ThC-joint motoneurons depended on walking direction, with increased load promoting the functional stance phase motoneuron pool (in forward walking, RetCx activity; in backward walking, ProCx activity). Thus, we show that modifications of sensory feedback in a locomotor system are related to walking direction. In a final set of ablation experiments, we show that the load influence is mediated by the three groups of trochanteral campaniform sensilla.

摘要

在陆地运动中,来自负载传感器的感觉反馈对于逐步改变正在进行的运动输出很重要。我们研究了来自腿部的负载信号对竹节虫行走系统中胸-基节(ThC)关节运动神经元池的影响。在原动基节(ProCx)和牵缩基节(RetCx)运动神经元池的节律性交替活动期间刺激负载传感器。通过对动物的机械刺激或对分离的胸神经节的药理学激活来诱导感兴趣节段的交替活动。来自腿部的负载信号通过重置和夹带ThC关节中央节律产生网络的活动来改变ThC运动神经元活动的时间。在前腿和中腿,负载信号诱导或促进RetCx活动,并降低或终止ProCx活动。在后腿中,引发了相反的转变,随着负载增加,RetCx活动终止并启动ProCx活动。对半完整行走动物的研究表明,负载对ThC关节运动神经元的影响取决于行走方向,负载增加会促进功能性站立期运动神经元池(向前行走时为RetCx活动;向后行走时为ProCx活动)。因此,我们表明运动系统中感觉反馈的改变与行走方向有关。在最后一组切除实验中,我们表明负载影响是由三组转节钟形感器介导的。

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Dynamic simulation of insect walking.昆虫行走的动态模拟
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4
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J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2005 Nov;191(11):1037-54. doi: 10.1007/s00359-005-0029-x. Epub 2005 Nov 4.
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