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首页> 外文期刊>Journal of Neurophysiology >Effect of stimulating the lumbar skin caudal to a complete spinal cord injury on hindlimb locomotion
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Effect of stimulating the lumbar skin caudal to a complete spinal cord injury on hindlimb locomotion

机译:刺激腰椎皮肤尾部完全脊髓损伤对后肢运动的影响

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摘要

Sensory feedback is a potent modulator of the locomotor pattern generated by spinal networks. The purpose of this study was to assess the effect of cutaneous inputs from the back on the spinal-generated locomotor pattern. The spinal cord of six adult cats was transected at low thoracic levels. Cats were then trained to recover hindlimb locomotion. During experiments, the skin overlying lumbar vertebrae L-2 to L 7 was mechanically stimulated by a small calibrated clip or by manual pinching. Trials without and with cutaneous stimulation were performed at a treadmill speed of 0.4 m/s. Although manually pinching the skin completely stopped hindlimb locomotion and abolished weight support, cutaneous stimulation with the calibrated clip produced smaller effects. Specifically, more focalized cutaneous stimulation with the clip reduced flexor and extensor muscle activity and led to a more caudal positioning of the paw at contact and liftoff. Moreover, cutaneous stimulation with the clip led to a greater number of steps with improper nonplantigrade paw placements at contact and paw drag at the stance-to-swing transition. The most consistent effects on the hindlimb locomotor pattern were observed with cutaneous stimulation at midlumbar levels, from L-3 to L-5. The results indicate that cutaneous stimulation of the skin modulates the excitability of spinal circuits involved in generating locomotion and weight support, particularly at spinal segments thought to be critical for rhythm generation.
机译:感觉反馈是由脊髓网络产生的运动模式的有效调节剂。这项研究的目的是评估背部皮肤输入对脊柱产生的运动模式的影响。将六只成年猫的脊髓以低胸廓水平切开。然后训练猫以恢复后肢运动。在实验过程中,上方的腰椎L-2至L 7皮肤是通过小的校准夹或手动捏合机械刺激的。以0.4 m / s的跑步机速度进行无皮肤刺激和有皮肤刺激的试验。尽管手动捏紧皮肤完全停止了后肢的运动并取消了重量支撑,但是使用经过校准的夹子进行的皮肤刺激产生的作用较小。具体而言,用夹子进行的更集中的皮肤刺激会减少屈肌和伸肌的活动,并导致爪在接触和抬高时的尾端位置更大。此外,用夹子对皮肤进行刺激会导致更多的步骤,其中在接触到姿势时,非植物脚掌放置不当,而脚掌在姿势-摆动过渡时受到阻力。在L-3至L-5的中腰部皮肤刺激下,对后肢运动模式的影响最为一致。结果表明,皮肤的皮肤刺激调节参与产生运动和重量支持的脊髓回路的兴奋性,特别是在认为对节律产生至关重要的脊髓节段。

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