Direct comparison of calculated hip joint contact forces with those measured using instrumented implants. An evaluation of a three-dimensional mathematical model of the lower limb.
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Grand challenge competition to predict in vivo knee loadsIs my model good enough? Best practices for verification and validation of musculoskeletal models and simulations of movement.Postoperative changes in in vivo measured friction in total hip joint prosthesis during walking.Standardized Loads Acting in Hip ImplantsIs lifelong knee joint force from work, home, and sport related to knee osteoarthritis?Probability-based prediction of activity in multiple arm muscles: implications for functional electrical stimulation.Prediction of In Vivo Knee Joint Loads Using a Global Probabilistic Analysis.Computational modelling of the natural hip: a review of finite element and multibody simulations.On validation of multibody musculoskeletal models.Implantable sensor technology: measuring bone and joint biomechanics of daily life in vivo.Finite element analysis of the hip and spine based on quantitative computed tomography.Instrumented hip joint replacements, femoral replacements and femoral fracture stabilizers.Application and evaluation of biomechanical models and scores for the planning of total hip arthroplasty.The development of lower limb musculoskeletal models with clinical relevance is dependent upon the fidelity of the mathematical description of the lower limb. Part I: Equations of motion.System for intraoperative evaluation of soft-tissue-generated forces during total hip arthroplasty by measurement of the pressure distribution in artificial joints.Biomaterials and Tissue Biomechanics: A Match Made in Heaven?Design of Optimal Treatments for Neuromusculoskeletal Disorders using Patient-Specific Multibody Dynamic Models.Evaluating a suitable level of model complexity for finite element analysis of the intact acetabulum.The effect of knee model on estimates of muscle and joint forces in recumbent pedaling.Prediction of micromotion initiation of an implanted femur under physiological loads and constraints using the finite element method.Muscle optimization techniques impact the magnitude of calculated hip joint contact forces.Subject-specific geometrical detail rather than cost function formulation affects hip loading calculation.Patient-specific musculoskeletal modeling of the hip joint for preoperative planning of total hip arthroplasty: A validation study based on in vivo measurements.Prediction of hip joint load and translation using musculoskeletal modelling with force-dependent kinematics and experimental validation.Gait alterations to effectively reduce hip contact forces.Fatigue fracture of a cemented Omnifit CoCr femoral stem: implant and failure analysis.Ion release during fretting at taper joint interface of hip joint prosthesis
P2860
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P2860
Direct comparison of calculated hip joint contact forces with those measured using instrumented implants. An evaluation of a three-dimensional mathematical model of the lower limb.
description
2003 nî lūn-bûn
@nan
2003年の論文
@ja
2003年学术文章
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2003年学术文章
@zh
2003年学术文章
@zh-cn
2003年学术文章
@zh-hans
2003年学术文章
@zh-my
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@zh-sg
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@yue
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name
Direct comparison of calculate ...... tical model of the lower limb.
@en
Direct comparison of calculate ...... tical model of the lower limb.
@nl
type
label
Direct comparison of calculate ...... tical model of the lower limb.
@en
Direct comparison of calculate ...... tical model of the lower limb.
@nl
prefLabel
Direct comparison of calculate ...... tical model of the lower limb.
@en
Direct comparison of calculate ...... tical model of the lower limb.
@nl
P2093
P1476
Direct comparison of calculate ...... tical model of the lower limb.
@en
P2093
P304
P356
10.1016/S0021-9290(03)00072-1
P577
2003-07-01T00:00:00Z