Compensatory adaptation of parallel motor pathways promotes skilled forelimb recovery after spinal cord injury

平行运动通路的补偿性适应促进脊髓损伤后前肢的熟练恢复

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作者:Imran S Sheikh, Kathleen M Keefe, Noelle A Sterling, Ian P Junker, Chen Li, Jie Chen, Xiao-Ming Xu, Lynn G Kirby, George M Smith

Abstract

Skilled forelimb patterning is regulated by the corticospinal tract (CST) with support from brainstem regions. When the CST is lesioned, there is a loss of forelimb function; however, if indirect pathways remain intact, rehabilitative training can facilitate recovery. Following spinal cord injury, rehabilitation is thought to enhance the reorganization and plasticity of spared supraspinal-propriospinal circuits, aiding functional recovery. This study focused on the roles of cervical propriospinal interneurons (PNs) and rubrospinal neurons (RNs) in the recovery of reaching and grasping behaviors in rats with bilateral lesions of the CST and dorsal columns at C5. The lesions resulted in a 50% decrease in pellet retrieval, which normalized over four weeks of training. Silencing PNs or RNs after recovery resulted in reduced retrieval success. Notably, silencing both pathways corresponded to greater functional loss, underscoring their parallel contributions to recovery, alongside evidence of CST fiber sprouting in the spinal cord and red nucleus.

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