Malaquias Tiago M, Silveira Carolina, Aerts Wouter, De Groote Friedl, Dereymaeker Greta, Vander Sloten Jos, Jonkers Ilse
a Department of Mechanical Engineering, Biomechanics Section , KU Leuven , Leuven , Belgium.
b Department of Physics , University of Coimbra , Coimbra , Portugal.
Comput Methods Biomech Biomed Engin. 2017 Feb;20(2):153-159. doi: 10.1080/10255842.2016.1206533. Epub 2016 Jul 6.
Multibody simulations of human motion require representative models of the anatomical structures. A model that captures the complexity of the foot is still lacking. In the present work, two detailed 3D multibody foot-ankle models generated based on CT scans using a semi-automatic tool are described. The proposed models consists of five rigid segments (talus, calcaneus, midfoot, forefoot and toes), connected by five joints (ankle, subtalar, midtarsal, tarsometatarsal and metatarsophalangeal), one with 15DOF and the other with 8DOF. The calculated kinematics of both models were evaluated using gait trials and compared against literature, both presenting realistic results. An inverse dynamic analysis was performed for the 8DOF model, again presenting feasible dynamic results.
人体运动的多体模拟需要解剖结构的代表性模型。目前仍缺乏一个能够捕捉足部复杂性的模型。在本研究中,描述了使用半自动工具基于CT扫描生成的两个详细的三维多体足踝模型。所提出的模型由五个刚性节段(距骨、跟骨、中足、前足和脚趾)组成,通过五个关节(踝关节、距下关节、中跗关节、跗跖关节和跖趾关节)相连,一个模型有15个自由度,另一个有8个自由度。使用步态试验评估了两个模型计算出的运动学,并与文献进行了比较,两者均呈现出逼真的结果。对8自由度模型进行了逆动力学分析,同样呈现出可行的动力学结果。