Human Health Sciences, Graduate School of Medicine, Kyoto University, Japan.
Human Health Sciences, Graduate School of Medicine, Kyoto University, Japan.
J Biomech. 2021 Dec 2;129:110824. doi: 10.1016/j.jbiomech.2021.110824. Epub 2021 Oct 23.
Squats are frequently performed to strengthen the quadriceps (Quad) and gluteus maximus (GM) in sports and clinical fields. Since the squat itself produces a large knee contact force, clarifying the relationship between the squat techniques and the knee contact force is important. However, the influence of different squat techniques on the medial knee contact force (KCFmed), which would result in knee disease, remains unclear. This study aimed to investigate the influence of various squat techniques on KCFmed during bodyweight squats. Since muscle strengthening by the squat is inevitable, we additionally aimed to explore the effect of a different squat technique on the quadriceps (Quad) and gluteus maximus (GM) forces. Twelve healthy adults performed squats with different stance widths (narrow stance, NS; middle stance, MS; and wide stance, WS) and different toe directions (0° of forefoot abduction - NEUT and 30°forefoot abduction - OUT). The KCFmed, Quad force, and GM force were computed using a musculoskeletal model with marker trajectories and ground reaction forces. The KCFmed in NS was significantly larger than that in MS and WS, and KCFmed in OUT was significantly larger than that in NEUT. The Quad force in OUT was significantly larger than that in the NEUT, and the GM force significantly became larger as the stance width became narrower. These findings suggest that squats in MS and NEUT may be suitable for reducing KCFmed while maintaining the Quad and GM forces.
深蹲在运动和临床领域中常被用来增强四头肌(Quad)和臀大肌(GM)。由于深蹲本身会产生较大的膝关节接触力,因此明确深蹲技术与膝关节接触力之间的关系很重要。然而,不同深蹲技术对内侧膝关节接触力(KCFmed)的影响,而 KCFmed 会导致膝关节疾病,目前仍不清楚。本研究旨在探讨不同深蹲技术对体重大腿深蹲时 KCFmed 的影响。由于深蹲必然会增强肌肉力量,我们还旨在探讨不同深蹲技术对四头肌(Quad)和臀大肌(GM)力量的影响。12 名健康成年人分别采用不同的站位宽度(窄站位、NS;中站位、MS;宽站位、WS)和不同的脚趾方向(前足外展 0°-NEUT 和前足外展 30°-OUT)进行深蹲。使用带有标记轨迹和地面反作用力的肌肉骨骼模型计算 KCFmed、Quad 力量和 GM 力量。NS 中的 KCFmed 明显大于 MS 和 WS 中的 KCFmed,而 OUT 中的 KCFmed 明显大于 NEUT 中的 KCFmed。OUT 中的 Quad 力量明显大于 NEUT 中的 Quad 力量,GM 力量随着站位宽度变窄而显著增大。这些发现表明,MS 和 NEUT 中的深蹲可能适合在保持 Quad 和 GM 力量的同时降低 KCFmed。