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通过三张二维数字图像从三维角度分析直立静态骨盆姿势的旋转和平移:计算机化分析的验证

Upright static pelvic posture as rotations and translations in 3-dimensional from three 2-dimensional digital images: validation of a computerized analysis.

作者信息

Harrison Deed E, Janik Tadeusz J, Cailliet Rene, Harrison Donald D, Normand Martin C, Perron Denise L, Oakley Paul A

机构信息

Chiropractic Biophysics, Non Profit, Inc., Elko, Nevada, USA.

出版信息

J Manipulative Physiol Ther. 2008 Feb;31(2):137-45. doi: 10.1016/j.jmpt.2007.12.009.

Abstract

PURPOSE

The aim of this study was to determine the accuracy in measuring the pelvic orientations of a phantom model using the PosturePrint method.

METHODS

In the Université du Québec à Trois-Rivières biomechanics laboratory, Trois-Rivières, Quebec, Canada, a mannequin was fixed on a rotating platform. For a set of 3 photographs (left lateral, anterior to posterior, right lateral) of each position, the mannequin pelvis was placed in 68 different postures on a stand, 61 cm from a wall, in front of a digital camera. The camera was at 83.8 cm in height and at 3.35 m from a calibrated wall grid. Mannequin postures were in 5 degrees of freedom: lateral translation (Tx), lateral flexion (Rz), axial rotation (Ry), flexion-extension (Rx), and anterior-posterior translation (Tz). Average errors were the differences of the positioned postures to the PosturePrint computed values.

RESULTS

Mean and SD of computational errors for rotation displacements were Rx = 0.5 degrees +/- 0.8 degrees , Ry = 1.3 degrees +/- 0.8 degrees , and Rz = 0.5 degrees +/- 0.3 degrees , and for translation, Tz = 1.2 +/- 0.6 mm and Tx = 0.9 +/- 0.5 mm.

CONCLUSIONS

The PosturePrint system allowed for accurate postural measurement of rotations and translations of a mannequin pelvis. The next step in evaluation of this product would be a reliability study on human subjects.

摘要

目的

本研究的目的是确定使用姿势打印法测量模型骨盆方位的准确性。

方法

在加拿大魁北克三河城魁北克大学的生物力学实验室中,将一个人体模型固定在一个旋转平台上。对于每个位置的一组3张照片(左侧、前后、右侧),在距离墙壁61厘米的支架上,将人体模型骨盆放置在数码相机前的68种不同姿势中。相机高度为83.8厘米,距离校准后的墙壁网格3.35米。人体模型姿势具有5个自由度:横向平移(Tx)、侧屈(Rz)、轴向旋转(Ry)、屈伸(Rx)和前后平移(Tz))。平均误差是定位姿势与姿势打印计算值之间的差异。

结果

旋转位移计算误差的平均值和标准差为Rx = 0.5度±0.8度,Ry = 1.3度±0.8度,Rz = 0.5度±0.3度,平移方面,Tz = 1.2±0.6毫米,Tx = 0.9±0.5毫米)。

结论

姿势打印系统能够准确测量人体模型骨盆的旋转和平移姿势。评估该产品的下一步将是对人体受试者进行可靠性研究。

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