Faculty of Sports and Health Science, Ritsumeikan University, Kusatsu City, Japan.
J Sports Sci. 2011 May;29(8):867-77. doi: 10.1080/02640414.2011.568512.
The aim of this study was to examine the effect of bilateral asymmetry of muscle strength on maximal height of the squat jump. A computer simulation technique was used to develop two kinds of 3D human lower limb musculoskeletal model (model-symmetry and model-asymmetry). The total muscle strength of the two models was set to be identical. Bilateral muscle strength was equal in the model-symmetry simulation, while the model-asymmetry simulation was performed with a 10% bilateral strength asymmetry. A forward dynamics approach was used to simulate squat jumps. The squat jumps were successfully generated, producing jump heights of 0.389 m for model-symmetry and 0.387 m for model-asymmetry. The small difference in height (0.5%) indicated that the effect of the 10% bilateral asymmetry of muscle strength on jump height is negligible. With model-asymmetry, the strong leg compensated for the muscle strength deficit of the weak leg. Importantly, the mono-articular and large extensor muscles of the hip and knee joint of the strong leg, including the gluteus maximus, adductor magnus, and vasti, compensated for the muscle strength deficit of the weak leg.
本研究旨在探讨肌肉力量双侧不对称对深蹲跳最大高度的影响。采用计算机模拟技术构建了两种三维人体下肢骨骼肌肉模型(模型对称和模型不对称)。两个模型的总肌肉力量设置为相同。模型对称模拟中双侧肌肉力量相等,而模型不对称模拟中双侧肌肉力量存在 10%的不对称。采用正向动力学方法模拟深蹲跳。成功生成深蹲跳,模型对称时的跳跃高度为 0.389m,模型不对称时的跳跃高度为 0.387m。高度差异很小(0.5%)表明肌肉力量双侧 10%不对称对跳跃高度的影响可以忽略不计。在模型不对称时,强壮腿的肌肉力量弥补了弱腿的肌肉力量不足。重要的是,强壮腿的单关节和大伸肌髋关节和膝关节的肌肉,包括臀大肌、大收肌和股四头肌,弥补了弱腿的肌肉力量不足。