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Task-dependent modification of leg motor neuron synaptic input underlying changes in walking direction and walking speed

机译:腿运动神经元突触输入的任务依赖型修饰可能导致步行方向和步行速度发生变化

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摘要

Animals modify their behavior constantly to perform adequately in their environment. In terrestrial locomotion many forms of adaptation exist. Two tasks are changes of walking direction and walking speed. We investigated these two changes in motor output in the stick insect Cuniculina impigra to see how they are brought about at the level of leg motor neurons. We used a semi-intact preparation in which we can record intracellularly from leg motor neurons during walking. In this single-leg preparation the middle leg of the animal steps in a vertical plane on a treadwheel. Stimulation of either abdomen or head reliably elicits fictive forward or backward motor activity, respectively, in the fixed and otherwise deafferented thorax-coxa joint. With a change of walking direction only thorax-coxa-joint motor neurons protractor and retractor changed their activity. The protractor switched from swing activity during forward to stance activity during backward walking, and the retractor from stance to swing. This phase switch was due to corresponding change of phasic synaptic inputs from inhibitory to excitatory and vice versa at specific phases of the step cycle. In addition to phasic synaptic input a tonic depolarization of the motor neurons was present. Analysis of changes in stepping velocity during stance showed only a significant correlation to flexor motor neuron activity, but not to that of retractor and depressor motor neurons during forward walking. These results show that different tasks in the stick insect walking system are generated by altering synaptic inputs to specific leg joint motor neurons only.
机译:动物不断地改变其行为,以在其环境中充分发挥作用。在陆地运动中,存在许多形式的适应。两项任务是改变步行方向和步行速度。我们调查了粘虫Cuniculina impigra中这两种运动输出的变化,以了解它们是如何在腿部运动神经元水平上产生的。我们使用了半完整的制剂,其中我们可以在行走过程中从腿部运动神经元进行细胞内记录。在此单腿准备过程中,动物的中腿在脚轮上的垂直平面上踩踏。腹部或头部的刺激分别在固定的或其他无胸腔的胸-髋关节中分别引起虚拟的向前或向后运动活动。随着步行方向的改变,只有胸-髋关节运动神经元的量角器和牵开器改变了它们的活动。量角器从向前的摇摆动作转变为向后行走的姿势动作,而牵开器从站立姿势转变为摇摆动作。这种相位转换是由于在步骤周期的特定阶段,相变突触输入从抑制性变为兴奋性,反之亦然。除了阶段性突触输入外,还存在运动神经元的强直去极化。站立期间步速变化的分析仅显示与屈肌运动神经元活动显着相关,而与向前行走过程中的牵开和降压运动神经元无关。这些结果表明,仅通过改变特定腿关节运动神经元的突触输入,就可以在竹节虫行走系统中产生不同的任务。

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