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Modelling the complexity of the foot and ankle during human locomotion: the development and validation of a multi-segment foot model using biplanar videoradiography

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DataCite Commons2022-04-20 更新2024-07-29 收录
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https://tandf.figshare.com/articles/dataset/Modelling_the_complexity_of_the_foot_and_ankle_during_human_locomotion_the_development_and_validation_of_a_multi-segment_foot_model_using_biplanar_videoradiography/16872207/2
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We developed and validated a multi-segment foot and ankle model for human walking and running. The model has 6-segments, and 7 degrees of freedom; motion between foot segments were constrained with a single oblique axis to enable triplanar motion [Joint Constrained (JC) model]. The accuracy of the JC model and that of a conventional model using a 6 degrees of freedom approach were assessed by comparison to segment motion determined with biplanar videoradiography. Compared to the 6-DoF model, our JC model demonstrated significantly smaller RMS differences [JC: 2.19° (1.43–2.73); 6-DoF: 3.25° (1.37–5.89)] across walking and running. The JC model is thus capable of more accurate musculoskeletal analyses and is also well suited for predictive simulations.
提供机构:
Taylor & Francis
创建时间:
2022-04-18
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