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Articles

A procedure for estimating the relevant forces in the human knee using a four-bar mechanism

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Pages 577-587 | Received 14 May 2009, Accepted 21 Sep 2009, Published online: 03 Mar 2010
 

Abstract

Knee injuries, especially those that affect the cruciate and lateral ligaments, are one of the most serious and frequent pathologies that affect the lower human extremity. Hence, the aim of this study is to develop a dynamic model for the lower extremity capable of estimating forces, forces in the cruciate and collateral ligaments and those normal to the articular cartilage, generated in the knee. The proposed model considers a four-bar mechanism in the knee, a spherical joint in the pelvis and a revolute one in the ankle. The four-bar mechanism is obtained by a synthesis process. The dynamic model includes the inertial properties of the femur, tibia, patella and the foot, the ground reaction force and the most important muscles in the knee. Muscle forces are estimated using an optimisation technique. Results from the application of the model on a real human task are presented.

Acknowledgements

This research has been supported by the Spanish Government Grant CIT-300000-20008-15 INCAPA2. The authors also wish to thank the technical reviewers for their helpful comments.

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