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Acute effects of anterior thigh foam rolling on hip angle, knee angle, and rectus femoris length in the modified Thomas test

机译:改良托马斯试验中大腿前侧泡沫对髋关节角,膝关节角和股直肌长度的急性影响

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摘要

abstract: Background. Foam rolling has been shown to acutely increase range of motion (ROM) during knee flexion and hip flexion with the experimenter applying an external force, yet no study to date has measured hip extensibility as a result of foam rolling with controlled knee flexion and hip extension moments. The purpose of this study was to investigate the acute effects of foam rolling on hip extension, knee flexion, and rectus femoris length during the modified Thomas test.Methods. Twenty-three healthy participants (male = 7; female = 16; age = 22 ± 3.3 years; height = 170 ± 9.18 cm; mass = 67.7 ± 14.9 kg) performed two, one-minute bouts of foam rolling applied to the anterior thigh. Hip extension and knee flexion were measured via motion capture before and after the foam rolling intervention, from which rectus femoris length was calculated.Results. Although the increase in hip extension (change = +1.86° (+0.11, +3.61); z(22) = 2.08; p = 0.0372; Pearson’s r = 0.43 (0.02, 0.72)) was not due to chance alone, it cannot be said that the observed changes in knee flexion (change = −1.39° (−5.53, +2.75); t(22) = −0.70; p = 0.4933; Cohen’s d = − 0.15 (−0.58, 0.29)) or rectus femoris length (change = −0.005 (−0.013, +0.003); t(22) = −1.30; p = 0.2070; Cohen’s d = − 0.27 (−0.70, 0.16)) were not due to chance alone.Conclusions. Although a small change in hip extension was observed, no changes in knee flexion or rectus femoris length were observed. From these data, it appears unlikely that foam rolling applied to the anterior thigh will improve passive hip extension and knee flexion ROM, especially if performed in combination with a dynamic stretching protocol.
机译:摘要:背景。实验人员施加外力时,泡沫滚动已证明可在膝盖弯曲和髋部弯曲过程中急剧增加运动范围(ROM),但迄今为止,尚无任何研究可通过控制膝盖弯曲和髋部伸展的泡沫滚动来测量髋关节可伸展性片刻。这项研究的目的是在改良的托马斯试验中研究泡沫滚动对髋部伸展,膝盖屈曲和股直肌长度的急性影响。 23名健康参与者(男= 7;女= 16;年龄= 22±3.3岁;身高= 170±9.18 cm;体重= 67.7±14.9 kg)进行了两次,一分钟的泡沫滚动至大腿前部。泡沫滚动干预前后,通过运动捕捉测量髋关节伸展和膝关节屈曲,由此计算出股直肌长度。尽管髋关节伸展的增加(变化= + 1.86°(+0.11,+3.61); z(22)= 2.08; p = 0.0372; Pearson's r = 0.43(0.02,0.72))并不是仅由于偶然因素造成的,它不能可以说观察到的膝关节屈曲变化(变化= −1.39°(−5.53,+2.75); t(22)= −0.70; p = 0.4933; Cohen d = − 0.15(−0.58,0.29))或股直肌长度(变化= −0.005(−0.013,+0.003); t(22)= −1.30; p = 0.2070; Cohen d = − 0.27(−0.70,0.16))并非仅由于偶然性。尽管观察到髋关节伸展的微小变化,但未观察到膝盖屈曲或股直肌长度的变化。从这些数据来看,施加在大腿前部的泡沫滚动似乎不太可能改善被动髋部伸展和膝盖屈曲ROM,尤其是与动态拉伸方案结合使用时。

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