首页> 美国卫生研究院文献>Journal of Neurophysiology >Differential Activity-Dependent Development of Corticospinal Control of Movement and Final Limb Position During Visually Guided Locomotion
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Differential Activity-Dependent Development of Corticospinal Control of Movement and Final Limb Position During Visually Guided Locomotion

机译:在视觉引导的运动过程中皮质脊髓运动控制和最终肢体位置的差异活动依赖性发展

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摘要

Although we understand that activity- and use-dependent processes are important in determining corticospinal axon terminal development in the spinal cord, little is known about the role of these processes in development of skilled control of limb movements. In the present study we determined the effects of unilateral motor cortex activity blockade produced by muscimol infusion during the corticospinal axon terminal refinement period, between postnatal weeks 5–7, on visually guided locomotion. We examined stepping and forepaw placement on the rungs of a horizontal ladder and gait modifications as animals stepped over obstacles during treadmill walking. When cats traversed the horizontal ladder, the limb contralateral to inactivation was placed significantly farther forward on the rungs than the ipsilateral limb, indicating defective endpoint control. Similarly, when animals stepped over obstacles on a treadmill, the contralateral limb was placed farther in front of the obstacle, but only when it was the first (i.e., leading) limb to step over the obstacle, not when it was the second (i.e., trailing) limb. This is also indicative of an endpoint control deficit. In contrast, neither during ladder walking, nor when stepping over obstacles on the treadmill, was there any consistent evidence for a major impairment in limb trajectory. These results point to distinct and possibility independent corticospinal mechanisms for movement trajectory control and endpoint control. Although corticospinal activity during early postnatal development is needed to refine circuits for accurate endpoint control, this activity-dependent refinement is not needed for movement trajectory control.
机译:尽管我们知道活动和使用相关的过程在确定脊髓皮质脊髓轴突末端的发育中很重要,但对这些过程在熟练控制肢体运动中的作用了解甚少。在本研究中,我们确定了在产后5-7周之间的皮质脊髓轴突终末细化期间,由麝香酚输注产生的单侧运动皮层活动阻滞对视觉引导的运动的影响。当动物在跑步机上行走时越过障碍物时,我们检查了在水平梯子的梯级上踩踏和前爪的放置以及步态的变化。当猫穿过水平梯子时,与同侧肢体相比,处于灭活状态的对侧肢体在梯级上的位置要远得多,这说明端点控制存在缺陷。同样,当动物在跑步机上越过障碍物时,对侧肢体被放置在障碍物前方,但仅当它是第一个(即,引导)肢体越过障碍物时,而不是第二个(即,前者)越过障碍物时。 ,尾随)肢体。这也表明终点控制不足。相比之下,无论是在梯子行走期间,还是在跑步机上越过障碍物时,都没有任何一致的证据表明肢体轨迹受到严重损害。这些结果指出了用于运动轨迹控制和终点控制的独特且可能独立的皮质脊髓机制。尽管在产后早期发育过程中需要皮质脊髓活动来完善电路以进行精确的终点控制,但运动轨迹控制并不需要这种依赖于活动的活动。

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