Jorge J P, Simões F M F, Pires E B, Rego P A, Tavares D G, Lopes D S, Gaspar A
a ISR, Instituto Superior Técnico, Technical University of Lisbon , Avenida Rovisco Pais, 1049-001 Lisbon , Portugal.
Comput Methods Biomech Biomed Engin. 2014;17(11):1275-84. doi: 10.1080/10255842.2012.744398. Epub 2012 Dec 4.
In this study, a three-dimensional finite element (FE) model based on the specific anatomy of a patient presenting a femoroacetabular impingement of the 'cam'-type is developed. The FE meshes of the structures of interest are obtained from arthrographic magnetic resonance images. All soft tissues are considered linear elastic and isotropic, and the bones were assumed rigid. A compression of the femur on the acetabular cavity as well as flexural movements and internal rotations are applied. Stresses and contact pressures are evaluated in this patient-specific model in order to better interpret the mechanism of aggression of the femoral and acetabular cartilages. The corresponding results are presented and discussed. The values obtained for the contact pressures are similar to those reported by other models based on idealised geometries. An FE analysis of a non-cam hip is also performed for comparison with the pathological case.
在本研究中,基于一名呈现“凸轮”型股骨髋臼撞击症患者的特定解剖结构,构建了一个三维有限元(FE)模型。感兴趣结构的有限元网格取自关节造影磁共振图像。所有软组织均视为线弹性且各向同性,骨骼假定为刚性。对髋臼腔内的股骨施加压缩以及弯曲运动和内旋。在这个特定患者模型中评估应力和接触压力,以便更好地解释股骨和髋臼软骨的损伤机制。给出并讨论了相应结果。获得的接触压力值与其他基于理想化几何形状的模型所报告的值相似。还对非凸轮型髋关节进行了有限元分析,以便与病理病例进行比较。