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Analysis of four manual and a computerized method for measuring axial vertebral rotation in computed tomography images.

机译:分析了四种用于在计算机断层扫描图像中测量轴向椎骨旋转的手册和一种计算机方法。

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STUDY DESIGN: Axial vertebral rotation (AVR) of normal and scoliotic vertebrae was measured in computed tomography (CT) images by three observers using different manual and a computerized method. OBJECTIVE: To analyze 4 manual and a computerized method for measuring AVR in CT images. SUMMARY OF BACKGROUND DATA: Manual measurement of AVR is difficult and error-prone when compared with computerized methods. To the best of our knowledge, a systematic comparison of the established manual with a computerized method has not been performed yet. METHODS: AVRs of 14 normal and 14 scoliotic vertebrae from CT images were measured (a) manually using the methods of Aaro and Dahlborn, Spine 1981;6:460-7, Ho et al, Spine 1993;18:1173-7, Krismer et al, J Spinal Disord 1999;12:126-30, and Gocen et al, J Spinal Disord 1998;11:210-4., and (b) automatically using a computerized method, which is based on the evaluation of vertebral symmetry in 2 dimensions (2D) and in 3 dimensions (3D). RESULTS.: The computerized method was most consistent with the method of Aaro and Dahlborn, which also proved to be the most reproducible and reliable manual method. The low overall intraobserver variability (1.1 degrees SD) and interobserver variability (1.8 degrees SD) of the computerized method indicate that the symmetry-based determination of AVR is reproducible and reliable, as the localization of vertebral centroids is the major source of its variability. CONCLUSION: The computerized method yielded higher reproducibility and reliability of AVR measurements, indicating that it may represent a feasible alternative to manual methods, moreover because it is also faster and more operator-friendly.
机译:研究设计:三位观察员使用不同的手册和计算机方法在计算机断层扫描(CT)图像中测量了正常脊柱侧凸和脊柱侧凸的椎骨的旋转度(AVR)。目的:分析4种手动和计算机化的CT图像AVR测量方法。背景技术概述:与计算机方法相比,手动测量AVR既困难又容易出错。据我们所知,尚未对既定手册与计算机化方法进行系统比较。方法:使用Aaro和Dahlborn,Spine 1981; 6:460-7,Ho等人,Spine 1993; 18:1173-7,Krismer的方法手动测量来自CT图像的14块正常脊柱和14块脊柱侧凸的AVR(a)等人,J Spinal Disord 1999; 12:126-30,和Gocen等人,J Spinal Disord 1998; 11:210-4。,以及(b)使用计算机化方法自动进行,该方法基于椎骨对称性的评估2维(2D)和3维(3D)。结果:计算机化方法与Aaro和Dahlborn的方法最一致,也被证明是最可重复和可靠的手动方法。计算机化方法的总体观察者内部变异性低(1.1度SD)和观察者之间变异性低(1.8度SD)表明,基于对称性的AVR测定是可重复且可靠的,因为椎骨质心的定位是其变异性的主要来源。结论:计算机化方法具有较高的AVR测量重现性和可靠性,这表明它可以代替人工方法,因为它也更快,更易于操作。

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