Cleather D J, Bull A M J
School of Human Sciences, St. Mary's University College and Department of Bioengineering, Twickenham, UK.
Proc Inst Mech Eng H. 2011 Jun;225(6):621-6. doi: 10.1177/0954411911399975.
Previous research has demonstrated that the number of degrees of freedom (DOF) modelled at a given joint affects the antagonistic muscle activity predicted by inverse dynamics optimization techniques. This higher level of muscle activity in turn results in greater joint contact forces. For instance, modelling the knee as a 3 DOF joint has been shown to result in higher hip and knee joint forces commensurate with a higher level of muscular activity than when the knee is modelled with 1 DOF. In this study, a previously described musculoskeletal model of the lower limb was used to evaluate the sensitivity of the knee and hip joint contact forces to the DOF at the knee during vertical jumping in both a 1 and a 3 DOF knee model. The 3 DOF knee was found to predict higher tibiofemoral and hip joint contact forces and lower patellofemoral joint contact forces. The magnitude of the difference in hip contact force was at least as significant as that found in previous research exploring the effect of subject-specific hip geometry on hip contact force. This study therefore demonstrates a key sensitivity of knee and hip joint contact force calculations to the DOF at the knee. Finally, it is argued that the results of this study highlight an important physiological question with practical implications for the loading of the structures of the knee; that is, the relative interaction of muscular, ligamentous, and articular structures in creating moment equilibrium at the knee.
先前的研究表明,在给定关节处建模的自由度(DOF)数量会影响逆动力学优化技术预测的拮抗肌活动。这种更高水平的肌肉活动反过来会导致更大的关节接触力。例如,将膝关节建模为三自由度关节已被证明会导致比将膝关节建模为一自由度时更高的髋部和膝关节力,这与更高水平的肌肉活动相对应。在本研究中,使用先前描述的下肢肌肉骨骼模型来评估在垂直跳跃过程中,一自由度和三自由度膝关节模型中膝关节和髋关节接触力对膝关节自由度的敏感性。研究发现,三自由度膝关节能预测出更高的胫股关节和髋关节接触力以及更低的髌股关节接触力。髋关节接触力差异的大小至少与先前探索个体特异性髋关节几何形状对髋关节接触力影响的研究中所发现的差异一样显著。因此,本研究证明了膝关节和髋关节接触力计算对膝关节自由度的关键敏感性。最后,有人认为本研究结果突出了一个重要的生理问题,该问题对膝关节结构的负荷具有实际影响;也就是说,肌肉、韧带和关节结构在膝关节产生力矩平衡时的相对相互作用。