Pürzel Alexander, Kaufmann Paul, Koller Willi, Pöhlmann Lukas, Baca Arnold, Kainz Hans
Neuromechanics Research Group, Centre for Sport Science and University Sports, University of Vienna, Vienna, Austria.
Doctoral School of Pharmaceutical, Nutritional and Sport Sciences, University of Vienna, Vienna, Austria.
Scand J Med Sci Sports. 2025 May;35(5):e70058. doi: 10.1111/sms.70058.
The growing popularity of powerlifting, which consists of the squat, bench press, and deadlift, calls for biomechanically comprehensible coaching strategies. Understanding the muscle forces at work can play a key part in this endeavor. Therefore, the aim of this study was to investigate the effects of increasing intensity in the squat on muscle forces in elite powerlifters. Twenty-nine top-ranked powerlifters from the Austrian team (age: 26.1 ± 5.4 years; 1-repetition-maximum (1-RM): 2.4 ± 0.4 × body mass) performed squats at 70%, 75%, 80%, 85%, and 90% of their 1-RM. Force plates and 3D motion capture data were used to estimate muscle forces utilizing musculoskeletal models in OpenSim. Muscle forces significantly changed with increased intensity, particularly in the gluteus maximus and semitendinosus, which showed the greatest relative increase in muscle force. The vastii muscles exhibited the highest absolute muscle forces. Notably, the hamstrings, calf, and vastii muscle forces barely increased during the deepest and most challenging region of the squat (the sticking region) with increasing intensity. Furthermore, no correlation was found between the athletes' performance level and the ratio of single-joint to multijoint hip extensor muscle forces. These findings highlight the importance of focusing on hip-dominant techniques when squatting with high intensities and supplementary training for knee extensors to optimize performance.
由深蹲、卧推和硬拉组成的力量举运动越来越受欢迎,这就需要具备生物力学可理解性的训练策略。了解工作中的肌肉力量在这项工作中可以发挥关键作用。因此,本研究的目的是调查精英力量举运动员深蹲强度增加对肌肉力量的影响。来自奥地利队的29名顶级力量举运动员(年龄:26.1±5.4岁;1次重复最大值(1-RM):2.4±0.4×体重)以其1-RM的70%、75%、80%、85%和90%进行深蹲。使用测力板和3D运动捕捉数据,利用OpenSim中的肌肉骨骼模型来估计肌肉力量。随着强度增加,肌肉力量显著变化,尤其是臀大肌和半腱肌,其肌肉力量相对增加最大。股四头肌表现出最高的绝对肌肉力量。值得注意的是,随着强度增加,在深蹲最深且最具挑战性的区域(停滞区域),腘绳肌、小腿肌和股四头肌的力量几乎没有增加。此外,未发现运动员的表现水平与单关节和多关节髋部伸肌力量的比例之间存在相关性。这些发现强调了在高强度深蹲时专注于以髋部为主导的技术以及对伸膝肌进行补充训练以优化表现的重要性。