首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Pyramidal tract stimulation restores normal corticospinal tract connections and visuomotor skill after early postnatal motor cortex activity blockade.
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Pyramidal tract stimulation restores normal corticospinal tract connections and visuomotor skill after early postnatal motor cortex activity blockade.

机译:出生后早期运动皮质活动受阻后,锥体束刺激恢复了正常的皮质脊髓束连接和视觉运动技能。

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摘要

Motor development depends on forming specific connections between the corticospinal tract (CST) and the spinal cord. Blocking CST activity in kittens during the critical period for establishing connections with spinal motor circuits results in permanent impairments in connectivity and function. The changes in connections are consistent with the hypothesis that the inactive tract is less competitive in developing spinal connections than the active tract. In this study, we tested the competition hypothesis by determining whether activating CST axons, after previous silencing during the critical period, abrogated development of aberrant corticospinal connections and motor impairments. In kittens, we inactivated motor cortex by muscimol infusion between postnatal weeks 5 and 7. Next, we electrically stimulated CST axons in the medullary pyramid 2.5 h daily, between weeks 7 and 10. In controls (n = 3), CST terminations were densest within the contralateral deeper, premotor, spinal layers. After previous inactivation (n = 3), CST terminations were densest within the dorsal, somatic sensory, layers. There were more ipsilateral terminations from the active tract. During visually guided locomotion, there was a movement endpoint impairment. Stimulation after inactivation (n = 6) resulted in significantly fewer terminations in the sensory layers and more in the premotor layers, and fewer ipsilateral connections from active cortex. Chronic stimulation reduced the current threshold for evoking contralateral movements by pyramidal stimulation, suggesting strengthening of connections. Importantly, stimulation significantly improved stepping accuracy. These findings show the importance of activity-dependent processes in specifying CST connections. They also provide a strategy for harnessing activity to rescue CST axons at risk of developing aberrant connections after CNS injury.
机译:运动的发展取决于在皮质脊髓束(CST)与脊髓之间形成特定的连接。在与脊柱运动回路建立连接的关键时期,阻止小猫的CST活性会导致连接性和功能的永久性损害。连接的变化与这样的假说相一致:在运动性脊柱连接中,非活动性管道的竞争性低于活动性管道。在这项研究中,我们通过确定在关键时期先前的沉默后激活CST轴突是否消除了异常的皮质脊髓连接和运动障碍的发展,从而测试了竞争假设。在小猫中,我们在产后第5和第7周之间通过麝香酚输注使运动皮层失活。接下来,我们在第7至10周之间每天2.5 h电刺激骨髓金字塔中的CST轴突。在对照组(n = 3)中,CST终止最密集对侧较深的运动前脊柱层。在先前的失活后(n = 3),CST终止在背侧躯体感觉层中最密集。活动道有更多的同侧终止。在视觉引导的运动过程中,存在运动终点损伤。灭活后的刺激(n = 6)导致感觉层的终止明显减少,运动前层的终止明显增加,并且活动皮层的同侧连接减少。慢性刺激通过锥体刺激降低了引起对侧运动的当前阈值,表明加强了联系。重要的是,刺激显着提高了步进精度。这些发现表明了与活动有关的过程在指定CST连接中的重要性。它们还提供了利用活动来拯救中枢神经系统损伤后发展异常连接风险的CST轴突的策略。

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