Int J Comput Dent. 2022 Mar 24;25(1):17-25.
To determine the effect of intraoral conditions on the accuracy of digital full-arch scans.
A reference bar was used for the in vivo and in vitro parts of the present study. For the in vitro part (PAT-vitro), the bar was fixed to connect the maxillary second molars on the patient's resin model. The same reference bar was fixed in a similar position intraorally for the in vivo testing (PAT-vivo). Model and patient were digitized using an intraoral scanner (Cerec Primescan AC, N = 40, n [PAT-vitro] = 20, n [PAT-vivo] = 20). Datasets were exported and metrically analyzed (Geomagic Control 2015) to determine the 3D linear and angular distortions in all three coordinate axes of the datasets with reference to the bar. Normality of the data distribution was tested using the Kolmogorov-Smirnov and Shapiro-Wilk tests. Homogeneity of the variances was tested using the Levené test. Statistically significant differences for all measured parameters in view of trueness were determined using the two-sample t test, and in view of precision using the two-sample Kolmogorov-Smirnov test.
The PAT-vivo group showed significantly higher trueness for most of the measured linear and angular distortion parameters than the PAT-vitro group. Regarding precision, the PAT-vitro group showed significantly better values for most of the measured linear and angular distortion parameters than the PAT-vivo group.
Within the limitations of the present study, Cerec Primescan AC leads to comparable accuracy parameters when applied in vivo and in vitro. The reproducibility (precision) was higher when scans were performed in vitro. Due to the high trueness, the system seems to be a valid tool to obtain digital full-arch datasets in vivo with comparable accuracy to in vitro tests. coronalaxial.
确定口腔内条件对数字全口扫描准确性的影响。
本研究的体内和体外部分均使用参考棒。对于体外部分(PAT-体外),将棒固定在患者树脂模型上的上颌第二磨牙上。对于体内测试(PAT-体内),将相同的参考棒固定在口腔内的类似位置。使用口内扫描仪(Cerec Primescan AC)对模型和患者进行数字化(Cerec Primescan AC,N = 40,n [PAT-体外] = 20,n [PAT-体内] = 20)。导出数据集并进行度量分析(Geomagic Control 2015),以确定数据集在所有三个坐标系中的 3D 线性和角度失真,并参考棒。使用 Kolmogorov-Smirnov 和 Shapiro-Wilk 检验测试数据分布的正态性。使用 Levené 检验测试方差的同质性。使用双样本 t 检验确定所有测量参数在准确性方面的统计学显著差异,使用双样本 Kolmogorov-Smirnov 检验确定在精度方面的统计学显著差异。
与 PAT-体外组相比,PAT-体内组的大多数测量线性和角度失真参数的准确性更高。在精度方面,PAT-体外组的大多数测量线性和角度失真参数的精度值明显优于 PAT-体内组。
在本研究的限制范围内,Cerec Primescan AC 在体内和体外应用时可产生可比的准确性参数。当在体外进行扫描时,可重复性(精度)更高。由于准确性高,该系统似乎是一种有效的工具,可以在体内获得具有可比准确性的数字全口数据集,与体外测试相当。