首页> 外文期刊>Journal of Biomechanics >In vivo estimation of the glenohumeral joint rotation center from scapular bony landmarks by linear regression.
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In vivo estimation of the glenohumeral joint rotation center from scapular bony landmarks by linear regression.

机译:通过线性回归从肩b骨标志物体内估计肱肱关节旋转中心。

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摘要

In this paper, a method is described for in vivo prediction of the glenohumeral joint rotation center (GH-r), necessary for the construction of a humerus local coordinate system in shoulder kinematic studies. The three-dimensional positions of five scapula bony landmarks as well as a large number of data points on the surface of the glenoid and humeral head were collected at 36 sets of cadaver scapulae and adjacent humeri. The position of GH-r in each scapula was estimated by mathematically fitting spheres to the glenoid and humeral head. GH-r prediction from scapula geometry parameters by linear regression resulted in a RMSE between measured and predicted GH-r of 2.32 mm for the x-coordinate, 2.69 mm for the y-coordinate and 3.04 mm for the z-coordinate. Application in vivo revealed a random humerus orientation error due to measurement inaccuracies of 1.35, 0.29 and 1.26 degrees standard deviation per rotation angle. The estimated total humerus orientation error including the offset error due to the regression model inaccuracy was 2.86, 0.84 and 2.69 degrees standard deviation. As these errors were about 15 and 20% of, respectively, the intra- and inter-subject variability of the humerus orientations measured, it is concluded that the method described in this paper allows for an adequate construction of a humerus local coordinate system.
机译:在本文中,描述了一种在体内预测肩肱关节旋转中心(GH-r)的方法,该方法对于在肩部运动学研究中建立肱骨局部坐标系非常必要。在36组尸体肩骨和邻近的肱骨上,收集了5个肩landmark骨标志物的三维位置以及关节盂和肱骨头表面上的大量数据点。 GH-r在每个肩骨中的位置是通过将球体数学拟合到关节盂和肱骨头来估计的。通过肩regression骨几何参数通过线性回归进行的GH-r预测导致测量和预测的GH-r在x坐标为2.32毫米,y坐标为2.69毫米,z坐标为3.04毫米之间。体内应用显示由于每个旋转角度的标准偏差1.35、0.29和1.26度而导致的随机肱骨取向误差。估计的总肱骨取向误差(包括由于回归模型的不准确性引起的偏移误差)为2.86、0.84和2.69度标准偏差。由于这些误差分别是所测得的肱骨方向的受试者内和受试者间变异性的约15%和20%,因此可以得出结论,本文所述的方法可以适当地构建肱骨局部坐标系。

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