首页> 外文期刊>Journal of Neurophysiology >Pattern generation for walking and searching movements of a stick insect leg. I. Coordination of motor activity.
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Pattern generation for walking and searching movements of a stick insect leg. I. Coordination of motor activity.

机译:模式生成,用于行走和搜索昆虫杆子的运动。一,运动活动的协调。

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During walking, the six legs of a stick insect can be coordinated in different temporal sequences or gaits. Leg coordination in each gait is controlled and stabilized by coordinating mechanisms that affect the action of the segmental neuronal networks for walking pattern generation. At present, the motor program for single walking legs in the absence of movement-related coordinating intersegmental influences from the other legs is not known. This knowledge is a prerequisite for the investigation of the segmental neuronal mechanisms that control the movements of a leg and to study the effects of intersegmental coordinating input. A stick insect single middle leg walking preparation has been established that is able to actively perform walking movements on a treadband. The walking pattern showed a clear division into stance and swing phases and, in the absence of ground contact, the leg performed searching movements. We describe the activity patterns of the leg muscles and motoneurons supplying the coxa-trochanteral joint, the femur-tibial joint, and the tarsal leg joints of the middle leg during both walking and searching movements. Furthermore we describe the temporal coordination between them. During walking movements, the coupling between the leg joints was phase-constant; in contrast during searching movements, the coupling between the leg joints was dependent on cycle period. The motor pattern of the single leg generated during walking exhibits similarities with the motor pattern generated during a tripod gait in an intact animal. The generation of walking movements also drives the activity of thoraco-coxal motoneurons of the deafferented and de-efferented thoraco-coxal leg joint in a phase-locked manner, with protractor motoneurons being active during swing and retractor motoneurons being active during stance. These results show that for the single middle leg, a basic walking motor pattern is generated sharing similarities with the tripod gait and that the influence of the motor pattern generated in the distal leg joints is sufficient for driving the activity of coxal motoneurons so an overall motor pattern resembling forward walking is generated.
机译:在行走过程中,可以按照不同的时间顺序或步态协调竹节虫的六个腿。通过协调机制来控制和稳定每个步态中的腿部协调,这些机制会影响分段神经元网络的行走模式生成的作用。目前,在没有来自其他腿的与运动相关的协调节间影响的情况下,用于单个步行腿的运动程序尚不清楚。该知识是研究控制腿部运动的节段神经元机制并研究节间协调输入的影响的前提。已经建立了一种棒虫单条中腿行走制剂,该制剂能够主动在踏带上进行行走运动。步行模式显示出姿势和挥杆阶段的清晰划分,并且在没有地面接触的情况下,腿部进行了搜索动作。我们描述了在步行和搜索运动过程中,腿部肌肉和运动神经元的活动模式,这些腿部肌肉和运动神经元供应中腿的股骨-股骨转子关节,股骨-胫骨关节和腿关节。此外,我们描述了它们之间的时间协调。在步行运动中,腿关节之间的耦合是相位恒定的;相反,在搜索运动中,腿关节之间的耦合取决于周期。步行过程中产生的单腿运动模式与完整动物三脚架步态产生的运动模式相似。步行运动的产生也以锁相的方式驱动去力和去气胸胸段的胸廓的运动神经元的活动,其中量角运动神经元在摆动过程中处于活动状态,牵开器运动神经元在站立时处于活动状态。这些结果表明,对于单条中腿,产生了与三脚步态相似的基本步行运动模式,并且在远端腿关节产生的运动模式的影响足以驱动轴突运动神经元的活动,因此总体运动生成类似于向前行走的模式。

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