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首页> 外文期刊>Gait & posture >An exploration of the function of the triceps surae during normal gait using functional electrical stimulation.
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An exploration of the function of the triceps surae during normal gait using functional electrical stimulation.

机译:使用功能性电刺激探索正常步态中肱三头肌的功能。

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Gastrocnemius and soleus have a common tendon and both are active during stance phase, where they are thought to arrest and control tibial advance. Soleus is associated with the production of an extending moment at the knee. The two-joint gastrocnemius, which crosses the knee joint, will have an additional contribution to the knee flexors. Recent work using induced acceleration analysis (IAA) has demonstrated distinct differences between the actions of gastrocnemius and soleus. This study aims to use gait analysis to provide in vivo examination of these theoretical predictions. Functional electrical stimulation (FES) was chosen to provide a perturbation in muscle force, a close physical analogue to the theoretical predictions of IAA. Five adult male subjects, with no gait problems, participated. Each had gastrocnemius and soleus stimulated at three different timings during normal gait, while 3D gait data were collected. The order of testing was randomised and unstimulated trials were randomly interspersed to act as a control. The results show very different actions for soleus (ankle plantarflexing/knee extending) and gastrocnemius (ankle dorsiflexing/knee flexing) in stance phase. The counterintuitive nature of the action of gastrocnemius suggests that further clinical and biomechanical investigation into this muscle's function is required. The actions of both muscles at the knee confirm published IAA predictions. In vivo evidence such as this gives greater confidence when using model predictions. The approach adopted in this study could eventually be extended to other muscles and patient populations.
机译:腓肠肌和比目鱼肌具有共同的肌腱,并且在站立阶段都活跃,据认为它们可以阻止并控制胫骨的前进。 Soleus与膝部伸展力矩的产生有关。穿过膝盖关节的两关节腓肠肌将对膝盖屈肌产生额外的贡献。最近的使用诱导加速度分析(IAA)的研究表明腓肠肌和比目鱼肌之间的作用存在明显差异。这项研究旨在利用步态分析对这些理论预测进行体内检查。选择功能性电刺激(FES)来提供肌肉力量的摄动,这与IAA的理论预测非常接近。五名没有步态问题的成年男性受试者参加。在正常步态中,每个人在三个不同的时间刺激腓肠肌和比目鱼肌,同时收集3D步态数据。测试的顺序是随机的,未刺激的试验则随机穿插作为对照。结果显示,在站立阶段,比目鱼肌(踝plant屈/膝伸)和腓肠肌(踝背屈/屈膝)的动作有很大不同。腓肠肌动作的反直觉性质表明,需要对该肌肉功能进行进一步的临床和生物力学研究。膝盖处的两条肌肉的动作证实了已发布的IAA预测。当使用模型预测时,诸如此类的体内证据可提供更大的信心。这项研究中采用的方法最终可能会扩展到其他肌肉和患者人群。

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