Kim Wangdo, Kim Yoon-Hyuk, Veloso António P, Kohles Sean S
Univ Tecn Lisboa, Fac Motricidade Humana, CIPER, LBMF. Estrada da Costa, P-1499-002 Lisbon, Portugal.
J Nov Physiother. 2013 Mar 1;Suppl 4(1). doi: 10.4172/2165-7025.S4-001.
Researchers have reported several compensation methods to estimate bone and joint position from a cluster of skin-mounted markers as influenced by Soft Tissue Artifacts (STA). Tikhonov Regularization Filtering (TRF) as a means to estimate Instantaneous Screw Axes (ISA) was introduced here as a means to reduce the displacement of a rigid body to its simplest geometric form. Recent studies have suggested that the ISA of the knee, i.e., Knee Functional Axes (KFA), might be closely connected to the estimation of constraint forces such as those due to medial and lateral connective tissues. The estimations of ISAs were known to be highly sensitive to noisy data, which may be mathematically ill-posed, requiring smoothing such as that conducted by regularization. The main contribution in this work was to establish the reciprocal connection between the KFA and Ground Reaction Forces (GRF) as a means to estimate joint constraint forces. Presented results compare the computational performance with published kinetic and kinematic joint data generated from an instrumented total knee replacement. Implications of these preliminary findings with respect to dynamic alignment as a functional anatomic metric are discussed.
研究人员报告了几种补偿方法,用于从受软组织伪影(STA)影响的一组皮肤表面标记物中估计骨骼和关节位置。本文引入了蒂霍诺夫正则化滤波(TRF)作为估计瞬时螺旋轴(ISA)的一种方法,以此将刚体位移简化为最简单的几何形式。近期研究表明,膝关节的ISA,即膝关节功能轴(KFA),可能与诸如内侧和外侧结缔组织产生的约束力的估计密切相关。已知ISA的估计对噪声数据高度敏感,这在数学上可能是不适定的,需要进行正则化等平滑处理。这项工作的主要贡献在于建立KFA与地面反作用力(GRF)之间的相互联系,以此来估计关节约束力。给出的结果将计算性能与通过仪器化全膝关节置换产生的已发表的动力学和运动学关节数据进行了比较。讨论了这些初步发现对于作为功能解剖学指标的动态对线的意义。