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Training-Specific Neural Plasticity in Spinal Reflexes after Incomplete Spinal Cord Injury

机译:脊髓不完全损伤后脊髓反射的训练特定神经可塑性

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摘要

The neural plasticity of spinal reflexes after two contrasting forms of walking training was determined in individuals with chronic, motor-incomplete spinal cord injury (SCI). Endurance Training involved treadmill walking for as long as possible, and Precision Training involved walking precisely over obstacles and onto targets overground. Twenty participants started either Endurance or Precision Training for 2 months and then crossed over after a 2-month rest period to the other form of training for 2 months. Measures were taken before and after each phase of training and rest. The cutaneomuscular reflex (CMR) during walking was evoked in the soleus (SOL) and tibialis anterior muscles by stimulating the posterior tibial nerve at the ankle. Clonus was estimated from the EMG power in the SOL during unperturbed walking. The inhibitory component of the SOL CMR was enhanced after Endurance but not Precision Training. Clonus did not change after either form of training. Participants with lower reflex excitability tended to be better walkers (i.e., faster walking speeds) prior to training, and the reduction in clonus was significantly correlated with the improvement in walking speed and distance. Thus, reflex excitability responded in a training-specific way, with the reduction in reflex excitability related to improvements in walking function. Trial registration number is .
机译:在患有慢性运动不完全性脊髓损伤(SCI)的个体中,确定了两种对比形式的步行训练后脊髓反射的神经可塑性。耐力训练需要尽可能长时间地在跑步机上行走,而精准训练则需要在障碍物和地面目标上精确行走。 20名参与者开始进行2个月的耐力或精确训练,然后在2个月的休息时间后越过另一种形式的训练2个月。在训练和休息的每个阶段之前和之后都采取了措施。步行过程中的皮肌反射(CMR)通过刺激脚踝的后胫神经在比目鱼肌(SOL)和胫骨前肌中引起。在无扰动的步行过程中,通过SOL中的EMG功率估计了Clonus。耐力训练后,SOL CMR的抑制成分得到了增强,而精确训练则没有。两种形式的训练后,克洛诺斯都没有改变。反射兴奋性较低的参加者在训练之前往往是更好的步行者(即,更快的步行速度),并且克隆的减少与步行速度和距离的改善显着相关。因此,反射兴奋性以训练特定的方式响应,反射兴奋性的降低与步行功能的改善有关。试用注册号为。

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