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松弛线训练后姿势控制的改善伴随着Hoffmann反射(H反射)的降低。

Improved postural control after slackline training is accompanied by reduced H-reflexes.

作者信息

Keller M, Pfusterschmied J, Buchecker M, Müller E, Taube W

机构信息

Department of Medicine, Unit of Sports Science, University of Fribourg, Fribourg, Switzerland.

出版信息

Scand J Med Sci Sports. 2012 Aug;22(4):471-7. doi: 10.1111/j.1600-0838.2010.01268.x. Epub 2011 Mar 8.

Abstract

"Slacklining" represents a modern sports activity where people have to keep balance on a tightened ribbon. The first trials on the slackline result in uncontrollable lateral swing of the supporting leg. Training decreases those oscillations and therefore improves postural control. However, the underlying neural mechanisms are not known. Therefore, the present study aimed to highlight spinal adaptations going along with slackline training. Twenty-four subjects were either assigned to a training or a control group and postural control was assessed before and after the 10 training sessions. Additionally, soleus Hoffmann (H)-reflexes were elicited to evaluate changes in the excitability of the spinal reflex circuitry. Trained subjects were able to maintain balance on the slackline for at least 20 s (P<0.001) and reduced platform movements on the balance board (P<0.05). The H-reflexes were significantly diminished (P<0.05) while no changes occurred in the background electromyography (bEMG). The control group showed no significant changes. From a functional point of view the reflex reduction may serve to suppress uncontrollable reflex mediated joint oscillations. As the bEMG remained unchanged, presynaptic rather than post-synaptic mechanisms are speculated to be responsible for the changes in the Ia-afferent transmission.

摘要

“走扁带”是一项现代体育活动,人们需要在一条绷紧的带子上保持平衡。在扁带上的初次尝试会导致支撑腿出现无法控制的横向摆动。训练可以减少这些摆动,从而改善姿势控制。然而,其潜在的神经机制尚不清楚。因此,本研究旨在突出与走扁带训练相关的脊髓适应性变化。24名受试者被分为训练组或对照组,并在10次训练前后评估姿势控制。此外,引出比目鱼肌霍夫曼(H)反射以评估脊髓反射回路兴奋性的变化。经过训练的受试者能够在扁带上保持平衡至少20秒(P<0.001),并减少了在平衡板上的平台移动(P<0.05)。H反射显著减弱(P<0.05),而背景肌电图(bEMG)没有变化。对照组没有显著变化。从功能角度来看,反射减弱可能有助于抑制无法控制的反射介导的关节摆动。由于bEMG保持不变,推测是突触前而非突触后机制导致了Ia传入神经传递的变化。

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