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Effect of Different Slopes of the Lower Leg during the Nordic Hamstring Exercise on Hamstring Electromyography Activity

机译:小腿不同斜坡在北欧腿筋运动中对腿筋电谱锻炼活动的影响

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摘要

The purpose of this study was to examine whether the NHE with an increased lower leg slope angle would enhance hamstring EMG activity in the final phase of the descend. The hamstring EMG activity was measured, the biceps femoris long head (BFlh) and the semitendinosus (ST). Fifteen male volunteers participated in this study. Subjects performed a prone leg curl with maximal voluntary isometric contraction to normalize the hamstring EMG activity. Subsequently, subjects performed the NHE, with the help of a certified strength and conditioning specialist, while the lower leg slope angle were randomly set at 0° (NH), 20° (N20), and 40° (N40). To compare hamstring EMG activity during the NHE variations, the knee flexion angle was set in the range from 0° to 50°, divided into five phases (0–10°, 10–20°, 20–30°, 30–40° and 40–50°), where 0° indicated that the knee was fully extended. To calculate the knee extension angular velocity, the knee flexion angle divided by time, and break point angle (BPA) was the angle at which 10°/s was exceeded. In the statistical analysis, a two-way repeated measures ANOVA was used for the hamstring EMG activity and a one-way repeated measures ANOVA was used for the BPA. The EMG activity of the BFlh and the ST in N20 and N40 was significantly higher than in NH at knee flexion angle of 0–20° (p < 0.05). For the BPA, NH (57.75° ± 13.28°), N20 (36.27° ± 9.89°) and N40 (16.26° ± 9.58°) were significantly higher in that order (p < 0.05). The results of this study revealed that the NHE with an increased lower leg slope angle shifted the BPA to the lower knee flexion angle and enhanced the hamstring EMG activity in the final phase of the descent.
机译:本研究的目的是检查NHE是否具有增加的下腿斜率角度,在下降的最终阶段将增强腿筋EMG活动。测量了腿筋EMG活性,二头肌股骨长头(BFLH)和半念珠菌(ST)。十五名男志愿者参加了这项研究。受试者进行了具有最大自愿等距收缩的俯卧腿卷曲,以使HAMString EMG活性标准化。随后,借助于经过认证的强度和调节专家的受试者进行NHE,而下腿斜角在0°(NH),20°(N20)和40°(N40)中随机设置。为了在NHE变化期间比较腿筋EMG活动,将膝关节屈曲角设定在0°至50°的范围内,分为五个相(0-10°,10-20°,20-30°,30-40°,30-40°。 40-50°),其中0°表示膝盖完全延伸。为了计算膝关节延伸角速度,膝关节屈曲角度除以时间,断点角度(BPA)是超过10°/ s的角度。在统计分析中,使用双向重复措施Anova用于腿筋EMG活性,并且单向重复措施Anova用于BPA。 N20和N40中BFLH和ST的EMG活性显着高于0-20°的膝部屈曲角度的NH(P <0.05)。对于BPA,N20(57.75°±13.28°),N20(36.27°±9.89°)和N40(16.26°±9.58°)的顺序显着更高(P <0.05)。该研究的结果显示,下腿斜率增加的NHE将BPA移位到下膝部屈曲角度,并在下降的最终阶段增强了腿筋EMG活性。

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