Kim Wangdo, Veloso Antonio P, Araújo Duarte, Vleck Veronica, João Filipa
a Univ Tecn Lisboa, Fac Motricidade Humana , CIPER, LBMF.
Comput Methods Biomech Biomed Engin. 2015;18(1):78-89. doi: 10.1080/10255842.2013.779682. Epub 2013 Mar 25.
Researchers have used screw theory to describe the motion of the knee in terms of instantaneous axes of the knee (IAK). However, how geometric change to the dynamic alignment of IAK may affect stance phase of foot loading has not yet been fully explained. We have tested our informational framework through readily accessible benchmark data (Fregly et al. 2012): muscle contraction and ground reaction force are compounded into a wrench that is reciprocal to the IAK and resolved into component wrenches belonging to the reciprocal screw system. This revealed the special screw system that defines the freedom available to the knee and more precisely revealed how to measure this first order of freedom. After this step, we determined the reciprocal screw system, which involves the theory of equilibrium. Hence, a screw system of the first order will have a screw system of the fifth order as its reciprocal. We established a framework the estimation of reaction of constraints about the knee using a process that is simplified by the judicious generation of IAK for the first order of freedom in equilibrium.
研究人员已运用螺旋理论,依据膝关节瞬时轴(IAK)来描述膝关节的运动。然而,IAK动态对线的几何变化如何影响足部负重的站立期,尚未得到充分解释。我们已通过易于获取的基准数据(弗雷格利等人,2012年)对我们的信息框架进行了测试:肌肉收缩和地面反作用力被合成一个与IAK互易的力螺旋,并分解为属于互易螺旋系的分力螺旋。这揭示了定义膝关节可用自由度的特殊螺旋系,并更精确地揭示了如何测量这一第一级自由度。在这一步之后,我们确定了互易螺旋系,这涉及到平衡理论。因此,一阶螺旋系将有一个五阶螺旋系作为其互易系。我们建立了一个框架,通过为平衡中的第一级自由度明智地生成IAK来简化过程,从而估计膝关节约束反应。