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首页> 外文期刊>Journal of sport rehabilitation >Gluteus medius muscle activation during isometric muscle contractions.
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Gluteus medius muscle activation during isometric muscle contractions.

机译:等轴测肌肉收缩过程中臀肌的肌肉活化。

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CONTEXT: Functional subdivisions are proposed to exist in the gluteus medius (GM) muscle. Dysfunction of the GM, in particular its functional subdivisions, is commonly implicated in lower limb pathologies. However, there is a lack of empirical evidence examining the role of the subdivisions of the GM. OBJECTIVES: To compare the activation of the functional subdivisions of the GM (anterior, middle, and posterior) during isometric hip contractions. DESIGN: Single-session, repeated-measures observational study. SETTING: University research laboratory. PARTICIPANTS: Convenience sample of 15 healthy, pain-free subjects. INTERVENTION: Subjects performed 3 maximal voluntary isometric contractions for hip abduction and internal and external rotation on an isokinetic dynamometer with simultaneous recording of surface electromyography (sEMG) activity of the GM subdivisions. MAIN OUTCOME MEASURES: sEMG muscle activity for each functional subdivision of the GM during each hip movement was analyzed using a 1-way repeated-measures ANOVA (post hoc Bonferroni). RESULTS: The response of GM subdivisions during the 3 different isometric contractions was significantly different (interaction effect; P = .003). The anterior GM displayed significantly higher activation across all 3 isometric contractions than the middle and posterior subdivisions (main effect; both P < .001). The middle GM also demonstrated significantly higher activation than the posterior GM across all 3 isometric contractions (main effect; P = .027). There was also significantly higher activation of all 3 subdivisions during both abduction and internal rotation than during external rotation (main effect; both P < .001). CONCLUSIONS: The existence of functional subdivisions in the GM appears to be supported by the findings. Muscle activation was not homogeneous throughout the entire muscle. The highest GM activation was found in the anterior GM subdivision and during abduction and internal rotation. Future studies should examine the role of GM functional subdivisions in subjects with lower limb pathologies.
机译:背景:功能细分被认为存在于臀中肌(GM)肌肉中。 GM的功能障碍,特别是其功能细分,通常与下肢病变有关。但是,缺乏经验证据来检验转基因产品细分的作用。目的:比较等轴测髋关节收缩过程中GM的功能细分(前,中和后)的激活。设计:单节,重复测量的观察性研究。地点:大学研究实验室。参与者:15位健康,无痛受试者的便利性样本。干预:受试者在等速测力计上进行了3次最大的自发等距收缩,用于髋关节外展以及内部和外部旋转,同时记录了GM细分的表面肌电图(sEMG)活动。主要观察指标:使用1向重复测量方差分析(post hoc Bonferroni)对每个髋关节运动期间GM每个功能细分的sEMG肌肉活动进行分析。结果:在3个不同的等距收缩过程中,GM细分的响应显着不同(交互作用; P = 0.003)。前GM在所有3个等距收缩中均显示出比中部和后部明显更高的激活(主效应;均P <0.001)。在所有3个等距收缩中,中部GM的激活也均明显高于后部GM(主效应; P = .027)。在外展和内旋过程中,所有三个细分的激活均显着高于外旋过程(主效应;均P <.001)。结论:通用汽车中功能细分的存在似乎得到了研究结果的支持。整个肌肉的肌肉活化都不均匀。在前部GM细分以及外展和内旋过程中发现了最高的GM激活。未来的研究应检查GM功能分区在下肢病理疾病中的作用。

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