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使用现有比例方案估计三关节和四关节足部模型中的足部关节动力学:在儿童赤脚行走中的应用。

Estimation of foot joint kinetics in three and four segment foot models using an existing proportionality scheme: Application in paediatric barefoot walking.

作者信息

Deschamps Kevin, Eerdekens Maarten, Desmet Dirk, Matricali Giovanni Arnoldo, Wuite Sander, Staes Filip

机构信息

Department of Rehabilitation Sciences, Musculoskeletal Rehabilitation Research Group, KU Leuven, Belgium; Institut D'Enseignement Supérieur Parnasse Deux-Alice, Division of Podiatry, Bruxelles, Belgium; Department of Podiatry, Artevelde University College, Ghent, Belgium.

Clinical Motion Analysis Laboratory, UZ Pellenberg, Weligerveld 1, 3212 Lubbeek, Belgium.

出版信息

J Biomech. 2017 Aug 16;61:168-175. doi: 10.1016/j.jbiomech.2017.07.017. Epub 2017 Jul 28.

Abstract

Recent studies which estimated foot segment kinetic patterns were found to have inconclusive data on one hand, and did not dissociate the kinetics of the chopart and lisfranc joint. The current study aimed therefore at reproducing independent, recently published three-segment foot kinetic data (Study 1) and in a second stage expand the estimation towards a four-segment model (Study 2). Concerning the reproducibility study, two recently published three segment foot models (Bruening et al., 2014; Saraswat et al., 2014) were reproduced and kinetic parameters were incorporated in order to calculate joint moments and powers of paediatric cohorts during gait. Ground reaction forces were measured with an integrated force/pressure plate measurement set-up and a recently published proportionality scheme was applied to determine subarea total ground reaction forces. Regarding Study 2, moments and powers were estimated with respect to the Instituto Ortopedico Rizzoli four-segment model. The proportionality scheme was expanded in this study and the impact of joint centre location on kinetic data was evaluated. Findings related to Study 1 showed in general good agreement with the kinetic data published by Bruening et al. (2014). Contrarily, the peak ankle, midfoot and hallux powers published by Saraswat et al. (2014) are disputed. Findings of Study 2 revealed that the chopart joint encompasses both power absorption and generation, whereas the Lisfranc joint mainly contributes to power generation. The results highlights the necessity for further studies in the field of foot kinetic models and provides a first estimation of the kinetic behaviour of the Lisfranc joint.

摘要

最近一些对足部节段动力学模式进行估算的研究,一方面发现其数据尚无定论,另一方面也未区分距跟舟关节和跗跖关节的动力学情况。因此,本研究旨在重现近期发表的独立三段式足部动力学数据(研究1),并在第二阶段将估算扩展至四段式模型(研究2)。关于可重复性研究,重现了两个近期发表的三段式足部模型(Bruening等人,2014年;Saraswat等人,2014年),并纳入动力学参数,以计算小儿群体在步态期间的关节力矩和功率。使用集成力/压力板测量装置测量地面反作用力,并应用近期发表的比例方案来确定分区总地面反作用力。关于研究2,根据里佐利骨科研究所的四段式模型估算力矩和功率。本研究扩展了比例方案,并评估了关节中心位置对动力学数据的影响。与研究1相关的结果总体上与Bruening等人(2014年)发表的动力学数据吻合良好。相反,Saraswat等人(2014年)发表的踝关节、中足和拇趾峰值功率存在争议。研究2的结果表明,距跟舟关节兼具功率吸收和产生功能,而跗跖关节主要负责功率产生。这些结果凸显了足部动力学模型领域进一步研究的必要性,并首次对跗跖关节的动力学行为进行了估算。

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