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Accuracy and reliability of craniometric measurements on lateral cephalometry and 3D measurements on CBCT scans.

机译:侧向头颅测量法和CBCT扫描的3D测量法的准确性和可靠性。

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OBJECTIVE: To compare the accuracy of craniometric measurements made on lateral cephalograms and on cone beam computed tomography (CBCT) images. MATERIALS AND METHODS: Ten fiducial markers were placed on known craniometric landmarks of 25 dry skulls with stable occlusions. CBCT scans and conventional lateral headfilms subsequently were taken of each skull. Direct craniometric measurements were compared with CBCT measurements and with cephalometric measurements using repeated measures analysis of variance (ANOVA). All measurements were repeated within a 1-month interval, and intraclass correlations were calculated. RESULTS: No statistically significant difference was noted between CBCT measurements and direct craniometric measurements (mean difference, 0.1 mm). All cephalometric measurements were significantly different statistically from direct craniometric measurements (mean difference, 5 mm). Significant variations among measurements were noted. Some measurements were larger on the lateral cephalogram and some were smaller, but a pattern could be observed: midsagittal measurements were enlarged uniformly, and Co-Gn was changed only slightly; Co-A was always smaller. CONCLUSION: CBCT craniometric measurements are accurate to a subvoxel size and potentially can be used as a quantitative orthodontic diagnostic tool. Two-dimensional cephalometric norms cannot be readily used for three-dimensional measurements because of differences in measurement accuracy between the two exams.
机译:目的:比较在侧位头颅图和锥形束计算机断层扫描(CBCT)图像上进行颅骨测量的准确性。材料与方法:将十个基准标记物放置在25个干燥颅骨且具有稳定咬合的已知颅骨标志物上。随后对每个颅骨进行CBCT扫描和常规的侧面头膜。将直接颅骨测量与CBCT测量以及使用重复测量方差分析(ANOVA)的头颅测量进行比较。在1个月的间隔内重复所有测量,并计算组内相关性。结果:CBCT测量结果与直接颅骨测量结果之间没有统计学上的显着差异(平均差异为0.1 mm)。所有头颅测量值与直接颅骨测量值在统计学上均存在显着差异(均值差为5 mm)。注意到测量之间的显着差异。一些测量值在侧位脑电图上较大,而一些较小,但可以观察到一种模式:矢状位测量值均匀地增大,Co-Gn仅略有变化。 Co-A总是较小。结论:CBCT颅骨测量准确到亚体素大小,并有可能被用作定量正畸诊断工具。由于两次检查之间的测量准确性存在差异,因此二维头颅测量标准无法轻松用于三维测量。

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