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The sacral networks and neural pathways used to elicit lumbar motor rhythm in the rodent spinal cord

机译:用于诱发啮齿动物脊髓腰椎运动节律的神经网络和神经通路

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摘要

Identification of neural networks and pathways involved in activation and modulation of spinal central pattern generators (CPGs) in the absence of the descending control from the brain is important for further understanding of neural control of movement and for developing innovative therapeutic approaches to improve the mobility of spinal cord injury patients. Activation of the hindlimb innervating segments by sacrocaudal (SC) afferent input and by specific application of neurochemicals to the sacral networks is feasible in the isolated spinal cord preparation of the newborn rat. Here we review our recent studies of sacral relay neurons with lumbar projections and evaluate their role in linking the sacral and thoracolumbar (TL) networks during different motor behaviors. Our major findings show that: (1) heterogeneous groups of dorsal, intermediate and ventral sacral-neurons with ventral and lateral ascending funicular projections mediate the activation of the locomotor CPGs through sacral sensory input; and (2) rhythmic excitation of lumbar flexor motoneurons, produced by bath application of alpha-1 adrenoceptor agonists to the sacral segments is mediated exclusively by ventral clusters of sacral-neurons with lumbar projections through the ventral funiculus.
机译:在没有来自大脑的下降控制的情况下,识别参与激活和调节脊柱中央模式发生器(CPG)的神经网络和途径对于进一步了解运动的神经控制和开发创新的治疗方法以改善大脑的活动性很重要。脊髓损伤患者。在新生大鼠的分离脊髓制备中,通过尾骨(SC)传入输入和将神经化学物质具体应用于the骨网络来激活后肢神经支配部分是可行的。在这里,我们回顾了我们对腰椎projection突中继神经元的最新研究,并评估了它们在不同运动行为过程中在连接and骨和胸腰椎(TL)网络中的作用。我们的主要发现表明:(1)背侧,中间和腹侧神经元的异质性组,具有腹侧和外侧上升的缆索状突起,通过部感觉输入来介导运动性CPG的激活; (2)通过bath骨向alpha节应用α-1肾上腺素受体激动剂产生的腰部屈肌运动神经节律性兴奋完全由神经元的腹侧簇介导,并通过腹侧fun突向腰部投射。

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