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Gluteus minimus: An intramuscular EMG investigation of anterior and posterior segments during gait

机译:臀小肌:步态过程中前段和后段的肌内肌电图检查

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Gluteus minimus is believed to consist of two structurally and functionally unique segments (anterior and posterior); however there is a lack of electromyography (EMG) research that attempts to verify current theoretical knowledge of this muscle. The purpose of this study was therefore to evaluate the function of gluteus minimus during gait, and to determine whether anterior and posterior segments are functionally independent. Bipolar fine wire intramuscular EMG electrodes were inserted into anterior and posterior gluteus minimus segments of fifteen healthy volunteers (9 males) according to previously verified guidelines. Participants completed a series of four walking trials, followed by maximum voluntary isometric contractions in five different positions. Temporal and amplitude variables for each segment were compared across the gait cycle with independent t-tests. The relative contribution of each segment to the maximum resisted trials was compared with Mann-Whitney U tests (α=0.05). Anterior and posterior segments were contracting at different relative intensities for three of the five maximum resisted trials (effect size=0.39 to 0.62, P<. 0.037). The posterior segment was larger in EMG amplitude (peak and average) during the first 20% of the gait cycle (effect size=0.96 to 1.03, P<. 0.02), while the anterior segment peaked later in the stance phase (effect size=0.83, P=0.034). Gluteus minimus is therefore composed of functionally independent segments. These results build on contemporary theoretical knowledge and may signify hip stabilising roles for each segment across different phases of the gait cycle.
机译:认为臀小肌由两个结构和功能上独特的部分(前部和后部)组成。然而,缺乏肌电图(EMG)研究试图验证这种肌肉的当前理论知识。因此,本研究的目的是评估步态中臀小肌的功能,并确定前后节段在功能上是否独立。根据先前验证的指南,将双极细线肌内肌电图电极插入15名健康志愿者(9名男性)的臀小肌前后段。参与者完成了一系列的四次步行试验,然后在五个不同的位置进行了最大的等距收缩。使用独立的t检验比较整个步态周期中每个节段的时间和幅度变量。将每个片段对最大抵抗试验的相对贡献与Mann-Whitney U检验进行了比较(α= 0.05)。在五个最大抵抗试验中的三个试验中,前段和后段以不同的相对强度收缩(效果大小= 0.39至0.62,P <0.037)。在步态周期的前20%中,后段的EMG振幅(峰值和平均值)较大(效果大小= 0.96至1.03,P <。0.02),而前段在姿势阶段达到峰值(效果大小= 0.83,P = 0.034)。因此,臀小肌由功能独立的节段组成。这些结果建立在当代理论知识的基础上,可能表明步态周期不同阶段中每个节段的髋部稳定作用。

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