2018
DOI: 10.1177/0954411918767695
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Musculoskeletal multibody dynamics simulation of the contact mechanics and kinematics of a natural knee joint during a walking cycle

Abstract: Detailed knowledge of the in vivo loading and kinematics in the knee joint is essential to understand its normal functions and the aetiology of osteoarthritis. Computer models provide a viable non-invasive solution for estimating joint loading and kinematics during different physiological activities. However, the joint loading and kinematics of the tibiofemoral and patellofemoral joints during a gait cycle were not typically investigated concurrently in previous computational simulations. In this study, a natu… Show more

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Cited by 19 publications
(31 citation statements)
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References 48 publications
(106 reference statements)
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“…Slight differences in MCL forces and PCL forces were observed between BCR TKA, BCR TKA without ACL, and PCR TKA. The predicted trend and magnitude of ligament forces were similar to that predicted by MSK models of Marra et al, 25 Hu et al, 36 and Shelburne et al, 37,38 though peak values of PCL and ACL forces differed slightly from these prior studies. The predicted muscle activities for each subject with BCR TKA, BCR TKA without ACL, and PCR TKA during walking gait are shown in Figure 7.…”
Section: Resultssupporting
confidence: 81%
“…Slight differences in MCL forces and PCL forces were observed between BCR TKA, BCR TKA without ACL, and PCR TKA. The predicted trend and magnitude of ligament forces were similar to that predicted by MSK models of Marra et al, 25 Hu et al, 36 and Shelburne et al, 37,38 though peak values of PCL and ACL forces differed slightly from these prior studies. The predicted muscle activities for each subject with BCR TKA, BCR TKA without ACL, and PCR TKA during walking gait are shown in Figure 7.…”
Section: Resultssupporting
confidence: 81%
“…It is interesting to observe the predicted tibiotalar medial and lateral contact forces, which are remarkably different from the knee joint. 16,24,34 As in the previous studies, 7,11,35 the predicted peak values of the lateral contact force were higher than those of the medial contact force in tibiotalar joint for all subjects. And the predicted medial contact forces mainly occurred in the stance phase during walking.…”
Section: Discussionsupporting
confidence: 69%
“…The musculoskeletal modelling method would afford a wealth of understanding on the influence of gait patterns on muscles and joint force magnitudes, a strong platform of quantifying the biomechanics of HTO. Hu et al [94] and Chen et al [3] investigated the biomechanics of the natural knee joint and total knee replacement using subject-specific musculoskeletal multibody dynamics models. Therefore, the musculoskeletal modelling method is easily used to investigate the biomechanics of HTO under musculoskeletal dynamics environment.…”
Section: Methodsmentioning
confidence: 99%