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在肌肉骨骼建模中,使用规定的肩胛骨运动学来估计无约束的自然上肢运动时所涉及的误差。

Errors Associated With Utilizing Prescribed Scapular Kinematics to Estimate Unconstrained, Natural Upper Extremity Motion in Musculoskeletal Modeling.

作者信息

Richardson R Tyler, Rapp Elizabeth A, Quinton R Garry, Nicholson Kristen F, Knarr Brian A, Russo Stephanie A, Higginson Jill S, Richards James G

机构信息

1 University of Delaware.

2 Penn State Harrisburg.

出版信息

J Appl Biomech. 2017 Dec 1;33(6):469-473. doi: 10.1123/jab.2016-0346. Epub 2017 Oct 30.

Abstract

Musculoskeletal modeling is capable of estimating physiological parameters that cannot be directly measured, however, the validity of the results must be assessed. Several models utilize a scapular rhythm to prescribe kinematics, yet it is unknown how well they replicate natural scapular motion. This study evaluated kinematic errors associated with a model that employs a scapular rhythm using 2 shoulder movements: abduction and forward reach. Two versions of the model were tested: the original MoBL ARMS model that utilizes a scapular rhythm, and a modified MoBL ARMS model that permits unconstrained scapular motion. Model estimates were compared against scapulothoracic kinematics directly measured from motion capture. Three-dimensional scapulothoracic resultant angle errors associated with the rhythm model were greater than 10° for abduction (mean: 16.4°, max: 22.4°) and forward reach (mean: 11.1°, max: 16.5°). Errors generally increased with humerothoracic elevation with all subjects reporting greater than 10° differences at elevations greater than 45°. Errors associated with the unconstrained model were less than 10°. Consequently, use of the original MoBL ARMS model is cautioned for applications requiring precise scapulothoracic kinematics. These findings can help determine which research questions are suitable for investigation with these models and assist in contextualizing model results.

摘要

肌肉骨骼建模能够估计无法直接测量的生理参数,然而,必须评估结果的有效性。有几种模型利用肩胛骨节律来规定运动学,但它们复制自然肩胛骨运动的程度尚不清楚。本研究评估了与一个采用肩胛骨节律的模型相关的运动学误差,该模型使用了两种肩部运动:外展和前伸。测试了该模型的两个版本:采用肩胛骨节律的原始MoBL ARMS模型,以及允许肩胛骨无约束运动的改良MoBL ARMS模型。将模型估计值与通过运动捕捉直接测量的肩胛胸壁运动学进行比较。对于外展(平均值:16.4°,最大值:22.4°)和前伸(平均值:11.1°,最大值:16.5°),与节律模型相关的三维肩胛胸壁合成角误差大于10°。随着肱骨胸壁抬高,误差通常会增加,所有受试者在抬高超过45°时报告的差异均大于10°。与无约束模型相关的误差小于10°。因此,对于需要精确肩胛胸壁运动学的应用,使用原始的MoBL ARMS模型时需谨慎。这些发现有助于确定哪些研究问题适合用这些模型进行研究,并有助于将模型结果置于具体情境中。

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