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首页> 外文期刊>The European Journal of Neuroscience >Activity of fin muscles and fin motoneurons during swimming motor pattern in the lamprey.
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Activity of fin muscles and fin motoneurons during swimming motor pattern in the lamprey.

机译:在七lamp鳗中游泳运动模式期间鳍肌肉和鳍运动神经元的活动。

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Coordination of motoneuron activity is a fundamental prerequisite for the generation of functional locomotor patterns. We investigate the neural mechanisms that coordinate activity of motoneuron pools in the vertebrate spinal cord with differing phases of activity in the locomotor cycle in a simple motor system, the lamprey swimming network. In the region of dorsal fins the lamprey spinal cord contains two groups of motoneurons: the myotomal motoneurons that innervate the trunk muscles; and the fin motoneurons controlling muscle fibres of the dorsal fins. We investigated the activity of fin muscles during swimming in vivo and that of fin motoneurons during fictive swimming in vitro. During swimming in vivo with cycle periods of 4-8 Hz, fin muscle activity covered a broad portion of the cycle, with the peak of activity out-of-phase to the ipsilateral myotomal muscles. During fictive swimming evoked by N-methyl-d-aspartate in the isolated spinal cord, fin motoneurons expressed similar out-of-phase activity. The phase relationship of the synaptic drive to fin motoneurons was examined by recording their activity intracellular during fictive swimming. Three different forms of membrane potential oscillation with different time courses in the locomotor cycle could be distinguished. Sagittal lesions of the spinal cord in the segment where fin motoneurons are recorded and up to one segment rostral and caudal from it did not influence the out-of-phase activity pattern of the motoneurons. Our results indicate that coordination of fin motoneuron activity with the locomotor activity of myotomal motoneurons does not depend on intrasegmental contralateral premotor elements.
机译:运动神经元活动的协调是功能性运动模式的产生的基本前提。我们研究了在一个简单的运动系统,七lamp鳗游泳网络中,协调运动神经元池在脊椎动物脊髓中的运动与运动周期中不同阶段活动的神经机制。在背鳍区域,七lamp鳗脊髓包含两组运动神经元:支配躯干肌肉的肌动能神经元;鳍运动神经元控制背鳍的肌肉纤维。我们调查了体内游泳过程中鳍肌肉的活动以及体外虚构游泳过程中鳍运动神经元的活动。在周期为4-8 Hz的体内游泳过程中,鳍状肌的活动覆盖了整个周期的大部分时间,活动峰值与同侧肌层肌肉异相。在N-甲基-d-天冬氨酸诱发的离体脊髓虚构游泳过程中,鳍运动神经元表现出相似的异相活性。通过在假想的游泳过程中记录它们在细胞内的活动来检查突触驱动与鳍运动神经元的相位关系。可以区分在运动周期中具有不同时程的三种不同形式的膜电位振荡。记录有鳍运动神经元的节段中的脊髓矢状损伤,并且从该节段直至神经节的尾部和尾部的一段不影响运动神经元的异相活动模式。我们的结果表明鳍运动神经元活动与肌动神经元的运动活动的协调不依赖于段内对侧前运动元件。

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