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Locomotor training modifies soleus monosynaptic motoneuron responses in human spinal cord injury

机译:运动训练可改善比目鱼比索单突触运动神经元在人类脊髓损伤中的反应

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摘要

The objective of this study was to assess changes in monosynaptic motoneuron responses to stimulation of Ia afferents after locomotor training in individuals with chronic spinal cord injury (SCI). We hypothesized that locomotor training modifies the amplitude of the soleus monosynaptic motoneuron responses in a body position-dependent manner. Fifteen individuals with chronic clinical motor complete or incomplete SCI received an average of 45 locomotor training sessions. The soleus H-reflex and M-wave recruitment curves were assembled using data collected in both the right and left legs, with subjects seated and standing, before and after training. The soleus H-reflexes and M-waves, measured as peak-to-peak amplitudes, were normalized to the maximal M-wave (Mmax). Stimulation intensities were normalized to 50 % Mmax stimulus intensity. A sigmoid function was also fitted to the normalized soleus H-reflexes on the ascending limb of the recruitment curve. After training, soleus H-reflex excitability was increased in both legs in AIS C subjects, and remained unchanged in AIS A-B and AIS D subjects during standing. When subjects were seated, soleus H-reflex excitability was decreased after training in many AIS C and D subjects. Changes in reflex excitability coincided with changes in stimulation intensities at H-threshold, 50 % maximal H-reflex, and at maximal H-reflex, while an interaction between leg side and AIS scale for the H-reflex slope was also found. Adaptations of the intrinsic properties of soleus motoneurons and Ia afferents, the excitability profile of the soleus motoneuron pool, oligosynaptic inputs, and corticospinal inputs may all contribute to these changes. The findings of this study demonstrate that locomotor training impacts the amplitude of the monosynaptic motoneuron responses based on the demands of the motor task in people with chronic SCI.
机译:这项研究的目的是评估慢性脊髓损伤(SCI)患者运动训练后单突触运动神经元对Ia传入刺激的反应的变化。我们假设运动训练以依赖于身体位置的方式改变了比目鱼单突触运动神经元反应的幅度。 15名患有慢性临床运动完全或不完全SCI的人平均接受了45次运动训练。比目鱼的H反射和M波募集曲线是使用在训练前后前后在受试者的坐姿和站立状态下在左右腿上收集的数据进行汇编的。比目鱼的H反射和M波(以峰峰值幅度测量)被归一化为最大M波(Mmax)。刺激强度标准化为50%Mmax刺激强度。乙状结肠功能也适用于募集曲线上升肢体的比目鱼比目鱼H反射标准化。训练后,站立时AIS C受试者的双腿比目鱼H反射兴奋性增加,而AIS A-B和AIS D受试者的比目鱼H反射兴奋性却保持不变。当受试者坐下时,在许多AIS C和D受试者中训练后,比目鱼H反射兴奋性降低。反射兴奋性的变化与H阈值,最大H反射的50%和最大H反射的刺激强度的变化同时发生,同时还发现了腿侧和AIS标度之间的相互作用。比目鱼运动神经元和Ia传入神经的内在特性的适应,比目鱼运动神经元池的兴奋性分布,突触输入和皮质脊髓输入都可能导致这些变化。这项研究的结果表明,运动训练根据慢性SCI患者的运动任务需求影响单突触运动神经元反应的幅度。

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