Neuromechanics Lab, Department of Human Movement Sciences, Old Dominion University, Norfolk, VA 23526.
J Biomech Eng. 2023 Jul 1;145(7). doi: 10.1115/1.4062330.
The squat is an essential exercise for strengthening lower body musculature. Although squats are frequently employed to improve lower extremity strength and neuromuscular control, differences between sexes and slight modifications, such as squat depth, can dramatically alter muscle recruitment and thus the foci of the exercise. The purpose of this study was to assess the effect of sex and squat depth on lower extremity coactivation and kinematics. Twenty recreationally active (female = 10) participants were recruited. The first visit consisted of one repetition maximum testing. For the second visit, muscle activation was recorded of the gluteus maximus (GM), semitendinosus, biceps femoris (BF), vastus medialis, vastus lateralis, rectus femoris, and gastrocnemius. Reflective markers were placed on the lower body for three-dimensional motion capture. Participants performed a series of squats to 90 deg knee flexion and 120 deg knee flexion. Benjamin-Hochberg procedure was employed and the alpha level was set at 0.05. Knee flexion (p < 0.001), adduction (p < 0.001), and external rotation (p = 0.008) were reduced during 90 deg compared to deep squats. Hip flexion, abduction, and external rotation were greater in deep squats (p < 0.001). Males had greater hip extensor to quad (HE:Q) cocontraction in 90 deg compared to deep squats (p = 0.007); females produced greater posterior chain activation in deep squats (p = 0.001) on ascent. When comparing sexes, males displayed greater HE:Q in the 90 deg squat during ascent (p = 0.013). The addition of deep squats into a preventative training program could be beneficial in reducing deficits prevalent in females and decrease injury incidence.
深蹲是强化下肢肌肉力量的基本练习。虽然深蹲常用于提高下肢力量和神经肌肉控制能力,但由于性别差异和轻微的修改(如深蹲深度),可以显著改变肌肉募集,从而改变运动的重点。本研究的目的是评估性别和深蹲深度对下肢协同激活和运动学的影响。招募了 20 名有规律运动的参与者(女性=10 名)。第一次访问包括一次最大重复测试。在第二次访问中,记录了臀大肌(GM)、半腱肌、股二头肌(BF)、股内侧肌、股外侧肌、股直肌和腓肠肌的肌肉激活情况。在下肢上放置了反射标记进行三维运动捕捉。参与者进行了一系列深蹲,达到 90°膝关节屈曲和 120°膝关节屈曲。采用 Benjamin-Hochberg 程序,alpha 水平设定为 0.05。与深度深蹲相比,90°时膝关节屈曲(p<0.001)、内收(p<0.001)和外旋(p=0.008)减少。深度深蹲时髋关节屈曲、外展和外旋更大(p<0.001)。男性在 90°时髋关节伸肌与四头肌(HE:Q)协同收缩大于深度深蹲(p=0.007);女性在深度深蹲时后链激活更大(p=0.001)。在比较性别时,男性在上升时在 90°深蹲中显示出更大的 HE:Q(p=0.013)。在预防训练计划中增加深度深蹲可能有助于减少女性常见的缺陷,并降低受伤发生率。