Herrmann S, Lenz R, Geier A, Lehner S, Souffrant R, Woernle C, Tischer T, Bader R
Orthopädische Klinik und Poliklinik, Universität Rostock, Doberaner Str. 142, 18057, Rostock, Deutschland.
Orthopade. 2012 Apr;41(4):252-9. doi: 10.1007/s00132-011-1851-1.
Numerical simulations contribute to the understanding of patellofemoral diseases. Whereas cadaveric studies are limited with respect to reproducibility of results, the impact of different operative approaches can be systematically evaluated based on mathematical models. The objective of this study was to introduce a musculoskeletal model which is capable of describing the dynamic interactions within the patellofemoral joint. It contains major bony and soft tissue structures of the right leg including the medial patellofemoral ligament (MPFL). Two operative approaches were considered based on the model to illustrate the effect on patellofemoral biomechanics during active knee flexion: On the one hand the effect of femoral insertion during MPFL reconstruction on medial soft tissue tension, and on the other hand the difference in patella kinematics before and after total knee arthroplasty. Finally, the potential of musculoskeletal models is discussed.
数值模拟有助于理解髌股疾病。尸体研究在结果的可重复性方面存在局限性,而基于数学模型可以系统地评估不同手术入路的影响。本研究的目的是引入一个能够描述髌股关节内动态相互作用的肌肉骨骼模型。它包含右腿的主要骨骼和软组织结构,包括髌股内侧韧带(MPFL)。基于该模型考虑了两种手术入路,以说明在主动膝关节屈曲过程中对髌股生物力学的影响:一方面是MPFL重建过程中股骨植入对内侧软组织张力的影响,另一方面是全膝关节置换术前和术后髌骨运动学的差异。最后,讨论了肌肉骨骼模型的潜力。