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Sensory feedback synchronizes motor and sensory neuronal networks in the neonatal rat spinal cord

机译:感觉反馈使新生大鼠脊髓中的运动和感觉神经元网络同步

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摘要

Early stages of sensorimotor system development in mammals are characterized by the occurrence of spontaneous movements. Whether and how these movements support correlated activity in developing sensorimotor spinal cord circuits remains unknown. Here we show highly correlated activity in sensory and motor zones in the spinal cord of neonatal rats in vivo. Both during twitches and complex movements, movement-generating bursts in motor zones are followed by bursts in sensory zones. Deafferentation does not affect activity in motor zones and movements, but profoundly suppresses activity bursts in sensory laminae and results in sensorimotor uncoupling, implying a primary role of sensory feedback in sensorimotor synchronization. This is further supported by largely dissociated activity in sensory and motor zones observed in the isolated spinal cord in vitro. Thus, sensory feedback resulting from spontaneous movements is instrumental for coordination of activity in developing sensorimotor spinal cord circuits.
机译:哺乳动物感觉运动系统发展的早期阶段的特征是自发运动的发生。这些运动是否以及如何支持发展感觉运动性脊髓电路的相关活动仍是未知的。在这里,我们在体内显示新生大鼠脊髓的感觉和运动区高度相关的活动。在抽搐和复杂运动期间,在运动区产生运动的爆发都伴随着感觉区的爆发。脱除力不影响运动区和运动中的活动,但是深刻地抑制感觉层中的活动爆发并导致感觉运动解耦,这意味着感觉反馈在感觉运动同步中起主要作用。在离体的脊髓中,在体外观察到的感觉区和运动区的活动大大分离,这进一步证明了这一点。因此,自发运动产生的感觉反馈有助于协调感觉运动性脊髓回路的活动。

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