首页> 美国卫生研究院文献>The Journal of Neuroscience >Increasing the Frequency of Spontaneous Rhythmic Activity Disrupts Pool-Specific Axon Fasciculation and Pathfinding of Embryonic Spinal Motoneurons
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Increasing the Frequency of Spontaneous Rhythmic Activity Disrupts Pool-Specific Axon Fasciculation and Pathfinding of Embryonic Spinal Motoneurons

机译:自发性节律活动的频率增加中断特定于池的轴突絮凝和胚胎脊髓动子的寻路。

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摘要

Rhythmic spontaneous bursting activity, which occurs in many developing neural circuits, has been considered to be important for the refinement of neural projections but not for early pathfinding decisions. However, the precise frequency of bursting activity differentially affects the two major pathfinding decisions made by chick lumbosacral motoneurons. Moderate slowing of burst frequency was shown previously to cause motoneurons to make dorsoventral (D-V) pathfinding errors and to alter the expression of molecules involved in that decision. Moderate speeding up of activity is shown here not to affect these molecules or D-V pathfinding but to strongly perturb the anteroposterior (A-P) pathfinding process by which motoneurons fasciculate into pool-specific fascicles at the limb base and then selectively grow to muscle targets. Resumption of normal frequency allowed axons to correct the A-P pathfinding errors by altering their trajectories distally, indicating the dynamic nature of this process and its continued sensitivity to patterned activity.
机译:在许多发育中的神经回路中发生的节律性自发性爆发活动已被认为对神经投射的细化很重要,但对早期寻路决策却不重要。但是,爆发活动的精确频率会不同地影响小鸡腰s运动神经元做出的两个主要寻路决策。先前已证明,爆发频率的适度减慢会导致运动神经元产生背腹(D-V)寻路错误并改变参与该决定的分子的表达。此处显示的适度加速活动不会影响这些分子或D-V寻路,但会强烈干扰前后运动(A-P)寻路过程,通过该过程,运动神经元在肢体底部聚集成池特异性束,然后有选择地生长至肌肉目标。恢复正常频率可使轴突通过向远处改变其轨迹来纠正A-P寻路误差,表明该过程的动态性质及其对图案活动的持续敏感性。

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