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使用基于模型的方法在步态分析期间进行生理校正的耦合运动。

Physiologically corrected coupled motion during gait analysis using a model-based approach.

作者信息

Bonnechère Bruno, Sholukha Victor, Salvia Patrick, Rooze Marcel, Van Sint Jan Serge

机构信息

Laboratory of Anatomy, Biomechanics and Organogenesis (LABO), Université Libre de Bruxelles, Belgium.

Laboratory of Anatomy, Biomechanics and Organogenesis (LABO), Université Libre de Bruxelles, Belgium; Department of Applied Mathematics, State Polytechnical University (SPbSPU), Saint-Petersburg, Russia.

出版信息

Gait Posture. 2015 Jan;41(1):319-22. doi: 10.1016/j.gaitpost.2014.09.012. Epub 2014 Sep 28.

Abstract

Gait analysis is used in daily clinics for patients' evaluation and follow-up. Stereophotogrammetric devices are the most used tool to perform these analyses. Although these devices are accurate results must be analyzed carefully due to relatively poor reproducibility. One of the major issues is related to skin displacement artifacts. Motion representation is recognized reliable for the main plane of motion displacement, but secondary motions, or combined, are less reliable because of the above artifacts. Model-based approach (MBA) combining accurate joint kinematics and motion data was previously developed based on a double-step registration method. This study presents an extensive validation of this MBA method by comparing results with a conventional motion representation model. Thirty five healthy subjects participated to this study. Gait motion data were obtained from a stereophotogrammetric system. Plug-in Gait model (PiG) and MBA were applied to raw data, results were then compared. Range-of-motion, were computed for pelvis, hip, knee and ankle joints. Differences between PiG and MBA were then computed. Paired-sample t-tests were used to compare both methods. Normalized root-mean square errors were also computed. Shapes of the curves were compared using coefficient of multiple correlations. The MBA and PiG approaches shows similar results for the main plane of motion displacement but statistically significative discrepancies appear for the combined motions. MBA appear to be usable in applications (such as musculoskeletal modeling) requesting better approximations of the joints-of-interest thanks to the integration of validated joint mechanisms.

摘要

步态分析在日常临床中用于患者评估和随访。立体摄影测量设备是进行这些分析最常用的工具。尽管这些设备很精确,但由于可重复性相对较差,结果必须仔细分析。主要问题之一与皮肤位移伪影有关。对于运动位移的主平面,运动表示被认为是可靠的,但由于上述伪影,二次运动或组合运动的可靠性较低。基于双步配准方法,先前开发了结合精确关节运动学和运动数据的基于模型的方法(MBA)。本研究通过将结果与传统运动表示模型进行比较,对该MBA方法进行了广泛验证。35名健康受试者参与了本研究。步态运动数据从立体摄影测量系统获得。将插入式步态模型(PiG)和MBA应用于原始数据,然后比较结果。计算骨盆、髋关节、膝关节和踝关节的运动范围。然后计算PiG和MBA之间的差异。使用配对样本t检验比较两种方法。还计算了归一化均方根误差。使用多重相关系数比较曲线形状。对于运动位移的主平面,MBA和PiG方法显示出相似的结果,但对于组合运动出现了统计学上的显著差异。由于整合了经过验证的关节机制,MBA似乎可用于需要更好地近似感兴趣关节的应用(如肌肉骨骼建模)。

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