首页> 美国卫生研究院文献>The Journal of Neuroscience >Sensory Feedback Induced by Front-Leg Stepping Entrains the Activity of Central Pattern Generators in Caudal Segments of the Stick Insect Walking System
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Sensory Feedback Induced by Front-Leg Stepping Entrains the Activity of Central Pattern Generators in Caudal Segments of the Stick Insect Walking System

机译:前肢步进引起的感觉反馈在竹节虫行走系统的尾段中夹带中央模式发生器的活动。

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摘要

Legged locomotion results from a combination of central pattern generating network (CPG) activity and intralimb and interlimb sensory feedback. Data on the neural basis of interlimb coordination are very limited. We investigated here the influence of stepping in one leg on the activities of neighboring-leg thorax–coxa (TC) joint CPGs in the stick insect (Carausius morosus). We used a new approach combining single-leg stepping with pharmacological activation of segmental CPGs, sensory stimulation, and additional stepping legs. Stepping of a single front leg could activate the ipsilateral mesothoracic TC CPG. Activation of the metathoracic TC CPG required that both ipsilateral front and middle legs were present and that one of these legs was stepping. Unlike the situation in real walking, ipsilateral mesothoracic and metathoracic TC CPGs activated by front-leg stepping fired in phase with the front-leg stepping. Local (intralimb) sensory feedback from load sensors could override this intersegmental influence of front-leg stepping, shifting retractor motoneuron activity relative to the front-leg step cycle and thereby uncoupling them from front-leg stepping. These data suggest that front-leg stepping in isolation would result in in-phase activity of all ipsilateral legs, and functional stepping gaits (in which the three ipsilateral legs do not step in synchrony) emerge because of local load sensory feedback overriding this in-phase influence.
机译:有腿的运动是由中央模式生成网络(CPG)活动以及下肢和下肢感觉反馈共同产生的。关于神经的协调性数据非常有限。在这里,我们调查了单脚踩踏对粘虫(Carausius morosus)中相邻腿胸–柯萨(TC)关节CPG活动的影响。我们使用了一种新方法,将单腿踩踏与分段CPG的药理激活,感觉刺激和其他踩踏腿相结合。单个前腿的踩踏可激活同侧中胸TC CPG。激活胸廓TC CPG时,必须同时存在同侧前腿和中腿,并且其中一条腿正在踩踏。与实际行走中的情况不同,由前腿踩踏激活的同侧中胸和胸胸TC CPG与前腿踩踏同相发射。来自负载传感器的局部(腿内)感官反馈可以抵消前腿踩踏的这种节段性影响,使牵开器运动神经元活动相对于前腿踩踏周期发生变化,从而将它们与前腿踩踏分离。这些数据表明,孤立的前腿踩踏会导致所有同侧腿处于同相活动状态,并且由于局部负荷感官反馈会覆盖此同侧腿,因此会出现功能性的步态(其中三个同侧腿不同步踩踏)。相位影响。

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