Development and evaluation of a new procedure for subject-specific tensioning of finite element knee ligaments
Article dans une revue avec comité de lecture
Subject-specific tensioning of ligaments is essential for the stability of the knee joint and represents a challenging aspect in the development of finite element models. We aimed to introduce and evaluate a new procedure for the quantification of ligament prestrains from biplanar X-ray and CT data. Subject-specific model evaluation was performed by comparing predicted femorotibial kinematics with the in vitro response of six cadaveric specimens. The differences obtained using personalized models were comparable to those reported in similar studies in the literature. This study is the first step toward the use of simplified, personalized knee FE models in clinical context such as ligament balancing.
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Development and evaluation of a new methodology for Soft Tissue Artifact compensation in the lower limb Article dans une revue avec comité de lectureLAHKAR, Bhrigu K.; ROHAN, Pierre-Yves; ASSI, Ayman; PILLET, Helene; BONNET, Xavier; THOREUX, Patricia; SKALLI, Wafa (Elsevier BV, 2021)Skin Marker (SM) based motion capture is the most widespread technique used for motion analysis. Yet, the accuracy is often hindered by Soft Tissue Artifact (STA). This is a major issue in clinical gait analysis where ...
Role of Ligaments in the Knee Joint Kinematic Behavior: Development and Validation of a Finite Element Model Chapitre d'ouvrage scientifiqueGERMAIN, François; ROHAN, Pierre-Yves; ROCHCONGAR, Goulven; ROUCH, Philippe; THOREUX, Patricia; PILLET, Hélène; SKALLI, Wafa (Springer International Publishing, 2016)The management of knee instability is a complex problem in orthopedic surgery. To comprehensively assess the biomechanical role of the knee joint and to investigate various aspects of knee mechanics, several Finite Element ...
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