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A new optical method to evaluate three-dimensional volume changes of alveolar contours: a methodological in vitro study.

机译:一种评估牙槽轮廓的三维体积变化的新光学方法:一种方法学的体外研究。

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OBJECTIVES: The aim of this study was to evaluate the reproducibility and the accuracy of volumetric measurements of specimens imitating localized alveolar ridge defects using an optical three-dimensional (3D) system. MATERIAL AND METHODS: Eight pairs of specimens (five with a cuboid and three with a geometrically complex form) were used for the measurements. Each of them imitated a pre-operative ridge defect and a corresponding surgically corrected post-operative situation. The true volume differences between two corresponding specimens were either assessed by a mechanical 3D coordinate measuring machine or by computer calculation (controls). For the test measurements, an optical 3D system with a newly developed software for volume measurements was utilized. The volumes of the specimen pairs were captured and the data digitized. The volume differences between the simulated pre- and post-operative situations were calculated by subtracting the two values obtained. The accuracy of the optical 3D system was assessed comparing the test and the control values. The difference between these values described the systematic error of the test method. The reproducibility was evaluated by calculating the coefficients of variation of repeated test volume measurements. Descriptive statistics were applied. RESULTS: The accuracy of the optical 3D system was very high with differences between test and control measurements never exceeding 1.5%. The systematic error of the test measurements was consistently below 2.5 mm3. The reproducibility of the measurements showed very low coefficients of variation ranging from 0.05% to 0.5%, indicating excellent reproducibility. CONCLUSIONS: The tested optical 3D system showed excellent accuracy and high reproducibility for measuring volume differences between specimens imitating localized alveolar ridge defects before and after augmentation procedures.
机译:目的:本研究的目的是评估使用光学三维(3D)系统模仿局部牙槽缺损的标本的体积测量的可重复性和准确性。材料与方法:八对标本(五对长方体,三对几何形状复杂)用于测量。他们每个人都模仿了术前脊骨缺损和相应的手术矫正术后情况。通过机械3D坐标测量机或计算机计算(控件)评估两个相应样本之间的真实体积差异。对于测试测量,使用了具有最新开发的用于体积测量的软件的光学3D系统。捕获标本对的体积并将数据数字化。通过减去获得的两个值,计算出模拟手术前后情况之间的体积差异。通过比较测试值和控制值来评估光学3D系统的准确性。这些值之间的差异描述了测试方法的系统误差。通过计算重复测试体积测量值的变化系数来评估可重复性。使用描述性统计。结果:光学3D系统的精度非常高,测试和控制测量之间的差异从未超过1.5%。测试测量的系统误差始终低于2.5 mm3。测量的可重复性显示出非常低的变异系数,范围从0.05%到0.5%,表明了极好的可重复性。结论:经过测试的光学3D系统显示出优异的准确性和高重现性,可用于测量在隆起手术前后模拟局部牙槽defects缺损的标本之间的体积差异。

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