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负载信号有助于在竹节虫的股骨-胫骨关节中产生与运动相关的反射逆转。

Load signals assist the generation of movement-dependent reflex reversal in the femur-tibia joint of stick insects.

作者信息

Akay Turgay, Büschges Ansgar

机构信息

Zoological Institute, University of Cologne, D-50923 Cologne, Germany.

出版信息

J Neurophysiol. 2006 Dec;96(6):3532-7. doi: 10.1152/jn.00625.2006. Epub 2006 Sep 6.

Abstract

Reinforcement of movement is an important mechanism by which sensory feedback contributes to motor control for walking. We investigate how sensory signals from movement and load sensors interact in controlling the motor output of the stick insect femur-tibia (FT) joint. In stick insects, flexion signals from the femoral chordotonal organ (fCO) at the FT joint and load signals from the femoral campaniform sensilla (fCS) are known to individually reinforce stance-phase motor output of the FT joint by promoting flexor and inhibiting extensor motoneuron activity. We quantitatively compared the time course of inactivation in extensor tibiae motoneurons in response to selective stimulation of fCS and fCO. Stimulation of either sensor generates extensor activity in a qualitatively similar manner but with a significantly different time course and frequency of occurrence. Inactivation of extensor motoneurons arising from fCS stimulation was more reliable but more than threefold slower compared with the extensor inactivation in response to flexion signals from the fCO. In contrast, simultaneous stimulation of both sense organs produced inactivation in motoneurons with a time course typical for fCO stimulation alone, but with a frequency of occurrence characteristic for fCS stimulation. This increase in probability of occurrence was also accompanied by a delayed reactivation of the extensor motoneurons. Our results indicate for the first time that load signals from the leg affect the processing of movement-related feedback in controlling motor output.

摘要

运动增强是感觉反馈有助于步行运动控制的一种重要机制。我们研究了来自运动和负载传感器的感觉信号如何在控制竹节虫股胫(FT)关节的运动输出中相互作用。在竹节虫中,已知FT关节处股弦音器(fCO)的屈曲信号和股钟形感器(fCS)的负载信号通过促进屈肌和抑制伸肌运动神经元活动来分别增强FT关节的站立期运动输出。我们定量比较了在选择性刺激fCS和fCO时胫节伸肌运动神经元失活的时间进程。对任一传感器的刺激均以定性相似的方式产生伸肌活动,但时间进程和发生频率明显不同。与响应fCO屈曲信号的伸肌失活相比,fCS刺激引起的伸肌运动神经元失活更可靠,但慢三倍以上。相反,同时刺激两个感觉器官会使运动神经元失活,其时间进程与单独的fCO刺激典型,但发生频率具有fCS刺激的特征。发生概率的这种增加还伴随着伸肌运动神经元的延迟重新激活。我们的结果首次表明,来自腿部的负载信号在控制运动输出时会影响与运动相关的反馈处理。

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