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Integrating multiple sensory systems to modulate neural networks controlling posture

机译:集成多个感觉系统以调节控制姿势的神经网络

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摘要

In this study we investigated the ability of sensory input to produce tonic responses in hindlimb muscles to facilitate standing in adult spinal rats and tested two hypotheses: 1) whether the spinal neural networks below a complete spinal cord transection can produce tonic reactions by activating different sensory inputs and 2) whether facilitation of tonic and rhythmic responses via activation of afferents and with spinal cord stimulation could engage similar neuronal mechanisms. We used a dynamically controlled platform to generate vibration during weight bearing, epidural stimulation (at spinal cord level S1), and/or tail pinching to determine the postural control responses that can be generated by the lumbosacral spinal cord. We observed that a combination of platform displacement, epidural stimulation, and tail pinching produces a cumulative effect that progressively enhances tonic responses in the hindlimbs. Tonic responses produced by epidural stimulation alone during standing were represented mainly by monosynaptic responses, whereas the combination of epidural stimulation and tail pinching during standing or epidural stimulation during stepping on a treadmill facilitated bilaterally both monosynaptic and polysynaptic responses. The results demonstrate that tonic muscle activity after complete spinal cord injury can be facilitated by activation of specific combinations of afferent inputs associated with load-bearing proprioception and cutaneous input in the presence of epidural stimulation and indicate that whether activation of tonic or rhythmic responses is generated depends on the specific combinations of sources and types of afferents activated in the hindlimb muscles.
机译:在这项研究中,我们调查了感觉输入在后肢肌肉中产生强直反应以促进成年脊髓大鼠站立的能力,并测试了两个假设:1)完整的脊髓横断下方的脊髓神经网络是否可以通过激活不同的感觉来产生强直反应输入和2)通过传入的激活和脊髓刺激促进进补和节律反应是否可以参与类似的神经元机制。我们使用动态控制的平台在负重,硬膜外刺激(在脊髓水平S1)和/或尾巴捏合期间产生振动,以确定腰spin脊髓可能产生的姿势控制反应。我们观察到平台移位,硬膜外刺激和尾巴捏合的组合会产生累积作用,从而逐渐增强后肢的强直反应。站立时单独由硬膜外刺激产生的强直反应主要表现为单突触反应,而站立时硬膜外刺激和尾巴捏合或踩踏跑步机时硬膜外刺激的结合促进了双侧单突触和多突触反应。结果表明,在硬膜外刺激的存在下,可以通过激活与承重的本体感觉相关的传入输入和皮肤输入的特定组合的激活来促进完全脊髓损伤后的进阶肌肉活动,并表明是否产生了激活的进补或节律性反应取决于后肢肌肉中激活的传入源和类型的特定组合。

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