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Eccentric loading of triceps surae modulates stretch shortening cycle behaviour - a possible therapeutic mechanism

机译:肱三头肌的偏心负荷调节拉伸缩短循环行为 - 一种可能的治疗机制

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摘要

Context: Eccentric exercises are increasingly being used to treat lower limb musculoskeletal conditions such as Achilles tendinopathy. Despite widespread clinical application and documented efficacy, mechanisms underpinning clinical benefit remain unclear. Positive adaptations in motor performance are one potential mechanism.Objective: To investigate how an eccentric loading intervention influences measures of stretch-shortening cycle (SSC) behaviour during a hopping task.Design: Within subjects repeated measures observational study.Setting: University motion analysis laboratory.Participants: Healthy adults. Interventions: A single intervention of 5 sets of 10 eccentric plantarflexion contractions at 6 RM using a commercial seated calf raise machine.Main outcome measures: Lower limb stiffness, sagittal plane ankle kinematics, and temporal muscle activity of the agonist (soleus) and antagonist (tibialis anterior) muscles, measured during sub-maximal hopping on a custom-built sledge-jump system. Results: Eccentric loading altered ankle kinematics during sub-maximal hopping; peak ankle angle shifted to a less dorsiflexed position by 2.9° and ankle angle pre-contact shifted by 4.4° (pu3c0.001). Lower limb stiffness increased from 5.9 to 6.8 Nm-1 (pu3c0.001), whilst surface EMG measures of soleus occurred 14 to 44% earlier (pu3c0.001) following the loading intervention. Conclusions: These findings suggest that eccentric loading alters SSC behaviour in a manner reflective of improved motor performance. Decreased ankle excursion, increased lower limb stiffness and alterations in motor control may represent a positive adaptive response to eccentric loading. These findings support the theory that mechanisms underpinning eccentric loading for tendinopathy may in part be due to improved ‘buffering’ of the tendon by the neuromuscular system.
机译:背景:古怪的锻炼正越来越多地用于治疗下肢肌骨骼疾病,例如跟腱炎。尽管广泛的临床应用和记录的疗效,支持临床获益的机制仍不清楚。运动能力的积极适应是潜在的机制之一。目的:研究偏心负荷干预如何在跳跃任务中影响伸展缩短周期(SSC)行为的措施设计:受试者内部重复测量的观察性研究环境:大学运动分析实验室参加者:健康的成年人。干预措施:使用商用坐式小腿抬高器械,以6 RM的压力对5组10偏心plant屈进行单次干预。主要预后指标:下肢僵硬,矢状面踝运动以及激动剂(比目鱼)和拮抗剂的颞肌活动(胫骨前肌),是在定制的雪橇跳跃系统上进行次最大跳跃时测得的。结果:在最大跳动过程中,偏心负荷改变了脚踝的运动学;踝最大角度向后屈的位置偏移了2.9°,预接触踝角度偏移了4.4°(p u3c0.001)。下肢刚度从5.9 Nm-1增加到6.8 Nm-1(p u3c0.001),而比目鱼肌的表面肌电图测量在负荷干预后提前14至44%(p u3c0.001)。结论:这些发现表明,偏心载荷改变了SSC的行为,从而反映出运动性能的改善。踝关节偏移的减少,下肢僵硬的增加以及运动控制的改变可能表示对偏心负荷的积极适应性反应。这些发现支持以下理论:支撑肌腱偏心负荷的机制可能部分归因于神经肌肉系统对肌腱的“缓冲”作用的改善。

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