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H-reflex excitability is inhibited in soleus, but, not gastrocnemius, at the short-latency response of a horizontal jump-landing task

机译:在水平跳跃着陆任务的短时延响应中,比目鱼肌抑制了H反射兴奋性,比腓肠肌抑制了H-反射兴奋性

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Impaired spinal-level neuromuscular control is suggested to contribute to instability and injury during dynamic landing tasks. Despite this suggestion, spinal-level neuromuscular control is yet to be examined during a horizontal jump-landing task. The aim of the current study was to assess changes in H-reflexes and its reliability at the short-latency response of landings from short and long distances. Eight healthy individuals (five male, three female; age, 22 1.2 yrs; height, 178 +/- 8.1 cm; weight, 72 +/- 15.7 kg) participated in the study. H-reflexes were evoked at the SLR in the soleus and medial gastrocnemius muscles, during two landing conditions: 25% and 50% of maximal broad jump distance. H-reflexes were expressed relative to the background electromyography (EMG) and maximal M-wave responses (M-max). Soleus H-reflexes were inhibited when landing from shorter distance (25%, 13.9 +/- 7.6%; 50%, 8.3 +/- 6.5%; p < 0.01). No change in H-reflex excitability was observed in medial gastrocnemius. Background EMG was unaltered across landing conditions. Inhibition of soleus H-reflex excitability from 25% to 50% landing condition indicates a reduced contribution of la-afferent feedback to the alpha-motor neuron during landings from greater distances, which may contribute to stiffness regulation at the ankle joint. Unaltered H-reflex excitability of medial gastrocnemius is most likely attributed to its functional role during the landing task. (C) 2016 Elsevier B.V. All rights reserved.
机译:建议在动态着陆任务期间,脊柱神经肌肉控制受损会导致不稳定和受伤。尽管有此建议,但在水平着陆过程中仍需检查脊髓水平的神经肌肉控制。当前研究的目的是评估短距离和长距离着陆的短时延响应中H反射的变化及其可靠性。八名健康个体(五名男性,三名女性;年龄22岁1.2岁;身高178 +/- 8.1厘米;体重72 +/- 15.7公斤)参加了研究。在两个着陆情况下,比目鱼肌和腓肠肌内侧的SLR引起H反射:最大跳远距离的25%和50%。 H反射相对于背景肌电图(EMG)和最大M波响应(M-max)表达。当从较短距离着陆时,比目鱼球的H反射受到抑制(25%,13.9 +/- 7.6%; 50%,8.3 +/- 6.5%; p <0.01)。在内侧腓肠肌中未观察到H反射兴奋性的变化。背景肌电图在着陆条件下保持不变。比目鱼H-反射兴奋性从25%降落到50%着陆条件的抑制表明,从较远距离着陆期间,la afferent反馈对α运动神经元的贡献减少,这可能有助于踝关节的僵硬调节。腓肠肌内侧的H反射兴奋性不变,很可能归因于其着陆任务期间的功能作用。 (C)2016 Elsevier B.V.保留所有权利。

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