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Cortex-dependent recovery of unassisted hindlimb locomotion after complete spinal cord injury in adult rats

机译:成年大鼠完全性脊髓损伤后无辅助后肢运动的皮质依赖性恢复

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摘要

After paralyzing spinal cord injury the adult nervous system has little ability to ‘heal’ spinal connections, and it is assumed to be unable to develop extra-spinal recovery strategies to bypass the lesion. We challenge this assumption, showing that completely spinalized adult rats can recover unassisted hindlimb weight support and locomotion without explicit spinal transmission of motor commands through the lesion. This is achieved with combinations of pharmacological and physical therapies that maximize cortical reorganization, inducing an expansion of trunk motor cortex and forepaw sensory cortex into the deafferented hindlimb cortex, associated with sprouting of corticospinal axons. Lesioning the reorganized cortex reverses the recovery. Adult rats can thus develop a novel cortical sensorimotor circuit that bypasses the lesion, probably through biomechanical coupling, to partly recover unassisted hindlimb locomotion after complete spinal cord injury.>DOI:
机译:麻痹脊髓损伤后,成人神经系统几乎无法“治愈”脊髓连接,因此无法发展出脊髓外恢复策略来绕过病变。我们挑战这个假设,表明完全脊椎成年大鼠可以恢复无辅助的后肢重量支持和运动,而无需通过病变通过运动来明确传递脊柱运动指令。这是通过药物和物理疗法的组合来实现的,该组合使皮质重组最大化,诱导躯干运动皮层和前爪感觉皮层扩张到脱除后牙的皮层,并伴有皮质脊髓轴突的发芽。破坏重组的皮质会逆转恢复。因此,成年大鼠可能会发展出一种新颖的皮质感觉运动回路,可能通过生物力学耦合绕过病变,从而在完全脊髓损伤后部分恢复无助的后肢运动。> DOI:

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