The effect of load magnitude on three-dimensional patellar kinematics in vivo
Abstract Studies of three-dimensional patellar kinematics done with little or no applied load may not accurately reflect kinematics at physiological load levels, and may provide different results to those acquired with greater applied loads or in physiologic weightbearing. We report the effect of lo...
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Veröffentlicht in: | Journal of biomechanics 2010-07, Vol.43 (10), p.1890-1897 |
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Sprache: | eng |
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Zusammenfassung: | Abstract Studies of three-dimensional patellar kinematics done with little or no applied load may not accurately reflect kinematics at physiological load levels, and may provide different results to those acquired with greater applied loads or in physiologic weightbearing. We report the effect of load magnitude on three-dimensional patellar kinematics (flexion, spin and tilt; proximal, lateral and anterior translation) using a validated, sequential static, MRI-based method. Ten healthy subjects loaded their study knee to 0% (no load), 15% and 30% bodyweight (BW) using a custom designed loading rig. Differences between loading levels were determined as a function of knee flexion for each kinematic parameter using linear hierarchical random-effects models. Quadratic and random slope terms were included in the models when significant. We found that the patellae flexed less with knee flexion at 30% BW load compared to 0% BW load ( p |
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ISSN: | 0021-9290 1873-2380 |
DOI: | 10.1016/j.jbiomech.2010.03.027 |