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Accuracy of an automated method to measure rotations of vertebrae from computerized tomography data.

机译:从计算机断层扫描数据测量椎骨旋转的自动方法的准确性。

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STUDY DESIGN: In this phantom study, rotations of a vertebral body calculated from computerized tomography (CT) were compared to the actual rotations provided by a specially designed device incorporating a reduction gear. OBJECTIVE: The objective was to measure the accuracy of the CT and an automated software program to calculate rotations of lumbar vertebral bodies. BACKGROUND: Rotations of individual vertebrae secondary to a change in position or load can be measured in select patients by roentgen stereophotogrammetry or by using CT and a specially constructed table that creates the rotation of the torso. The purpose of this study was to measure the precision and accuracy of rotation measurements made with a CT scanner and an automated program to calculate rotation. METHODS: We constructed a phantom with a lumbar vertebra that can be rotated within a CT scanner. CT of the vertebra were obtained at angular positions of 0, 0.360 degrees , 1.080 degrees , 2.520 degrees , 5.400 degrees , 11.160 degrees ,29.160 degrees , 29.340 degrees , 29.520 degrees , 29.610 degrees , 29.700 degrees , 29.790 degrees , 29.880 degrees , and 29.889 degrees . With an automated program based on a pixel-shift algorithm, we calculated rotations of the vertebra between pairs of images. Accuracy was calculated as mean difference between the actual and the calculated rotation, and precision was calculated as the standard deviation of the differences. RESULTS: Differences between actual and calculated rotations varied from -0.083 degrees to 0.132 degrees . For rotations less than 15 degrees , mean error (accuracy) was -0.039 degrees , and the standard deviation (precision) was 0.029 degrees . For rotations greater than 15 degrees , the accuracy was 0.086 degrees , and the precision was 0.023 degrees . CONCLUSIONS: This study shows that rotations of lumbar vertebrae may be measured with CT, and an automated program to an accuracy and precision better than 0.1 degrees , comparable to that of roentgen stereophotogrammetry.
机译:研究设计:在此幻像研究中,将通过计算机断层扫描(CT)计算得出的椎体旋转与由特殊设计的装有减速器的设备提供的实际旋转进行了比较。目的:目的是测量CT的准确性,并通过自动化软件程序计算腰椎椎体的旋转度。背景:在某些患者中,可以通过伦琴立体摄影测量法或通过使用CT和产生躯干旋转的特殊构造表格来测量继位或负荷变化后单个椎骨的旋转。这项研究的目的是测量使用CT扫描仪和自动程序计算旋转的旋转测量的精度和准确性。方法:我们构建了一个带有腰椎的体模,该体模可以在CT扫描仪中旋转。在0、0.360度,1.080度,2.520度,5.400度,11.160度,29.160度,29.340度,29.520度,29.610度,29.700度,29.790度,29.880度和29.889的角位置处获得椎骨CT度。使用基于像素移位算法的自动化程序,我们计算了成对的图像之间的椎骨旋转。精确度计算为实际和计算的旋转之间的平均差,而精确度计算为差的标准偏差。结果:实际和计算的旋转之间的差异从-0.083度到0.132度不等。对于小于15度的旋转,平均误差(精度)为-0.039度,标准偏差(精度)为0.029度。对于大于15度的旋转,精度为0.086度,精度为0.023度。结论:这项研究表明,可以用CT和自动化程序测量腰椎的旋转,其准确性和精确度优于伦琴立体摄影测量法,精确度优于0.1度。

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