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首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >The VMO: VL activation ratio while squatting with hip adduction is influenced by the choice of recording electrode
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The VMO: VL activation ratio while squatting with hip adduction is influenced by the choice of recording electrode

机译:臀部内收蹲时的VMO:VL激活率受记录电极选择的影响

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摘要

Concomitant hip adduction during squatting has long been advocated as a rehabilitative method to preferentially activate the VMO in persons with patellofemoral pain. This practice however has been based on research using surface electrodes which are prone to crosstalk from neighboring muscles (i.e., adductor magnus). This study sought to determine whether activation levels of the VMO relative to the VL while squatting with hip adduction would differ based on the choice of recording electrode. Ten healthy subjects performed a maneuver with hip adduction and without hip adduction. The mean VMO and VL activation levels were recorded simultaneously with surface and indwelling fine-wire electrodes. For both recording electrodes, the VMO and VL activity increased significantly with the addition of hip adduction (p< 0.05). However, the increase in VMO activation was more pronounced with surface electrodes, resulting in a significantly higher VMO:VL ratio with the incorporation of hip adduction compared to without hip adduction (p<0.05). No difference in the VMO:VL ratio was observed between the two squat conditions for the fine-wire electrodes (p>. 0.05). Our findings suggest that the VMO:VL activation ratio when squatting with hip adduction is influenced by electrode choice.
机译:长期以来,人们一直主张在蹲时伴随髋关节内收术是一种activate骨股骨痛患者中优先激活VMO的康复方法。然而,这种实践是基于使用易于与邻近的肌肉(即内收肌)串扰的表面电极进行的研究。这项研究试图确定在记录髋关节内收时VMO相对于VL的激活水平是否会有所不同。十名健康受试者进行了髋内收和不髋内收的动作。同时记录了表面和留置细线电极的平均VMO和VL活化水平。对于两个记录电极,随着髋关节内收的增加,VMO和VL活性显着增加(p <0.05)。然而,与没有髋关节内收的情况相比,表面电极的VMO激活的增加更为明显,导致髋关节内收的VMO:VL比明显更高(p <0.05)。对于细线电极,在两个下蹲条件之间未观察到VMO:VL比的差异(p> 0.05)。我们的研究结果表明,髋内收蹲时的VMO:VL激活比率受电极选择的影响。

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