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Workflow assessing the effect of gait alterations on stresses in the medial tibial cartilage - combined musculoskeletal modelling and finite element analysis

机译:评估步态改变对胫骨内侧软骨应力影响的工作流-结合肌肉骨骼模型和有限元分析

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摘要

Knee osteoarthritis (KOA) is most common in the medial tibial compartment. We present a novel method to study the effect of gait modifications and lateral wedge insoles (LWIs) on the stresses in the medial tibial cartilage by combining musculoskeletal (MS) modelling with finite element (FE) analysis. Subject’s gait was recorded in a gait laboratory, walking normally, with 5° and 10° LWIs, toes inward (‘Toe in’), and toes outward (‘Toe out wide’). A full lower extremity MRI and a detailed knee MRI were taken. Bones and most soft tissues were segmented from images, and the generic bone architecture of the MS model was morphed into the segmented bones. The output forces from the MS model were then used as an input in the FE model of the subject’s knee. During stance, LWIs failed to reduce medial peak pressures apart from Insole 10° during the second peak. Toe in reduced peak pressures by −11% during the first peak but increased them by 12% during the second. Toe out wide reduced peak pressures by −15% during the first and increased them by 7% during the second. The results show that the work flow can assess the effect of interventions on an individual level. In the future, this method can be applied to patients with KOA.
机译:膝骨关节炎(KOA)最常见于胫骨内侧腔。我们提出了一种新颖的方法,通过结合肌肉骨骼(MS)建模与有限元(FE)分析来研究步态改变和外侧楔形鞋垫(LWI)对胫骨内侧软骨应力的影响。受试者的步态记录在步态实验室中,以5°和10°LWI正常行走,脚趾向内(“脚趾向内”)和脚趾向外(“脚趾向外”)。进行了完整的下肢MRI和详细的膝盖MRI。从图像中分割出骨骼和大多数软组织,并将MS模型的通用骨骼结构变形为分割后的骨骼。然后,将来自MS模型的输出力用作对象膝盖的FE模型的输入。在站立期间,LWI在第二个峰值期间未能将鞋底内压力降低10摄氏度。在第一个峰值期间,脚趾的峰值压力降低了-11%,而在第二个峰值期间,其趾压增加了12%。在第一个操作过程中,尖峰压力峰值降低了-15%,在第二个操作过程中,峰值压力升高了7%。结果表明,工作流程可以评估干预措施在个人层面上的效果。将来,这种方法可以应用于KOA患者。

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