Department of Prosthodontics, Dental Clinic, Justus Liebig University, Schlangenzahl 14, 35392, Giessen, Germany.
Clin Oral Investig. 2021 Jul;25(7):4635-4642. doi: 10.1007/s00784-021-03777-z. Epub 2021 Jan 13.
Due to the partly strongly differing results in the literature, the aim of the present study was to investigate a possible deformation of the mandible during mouth opening using an intraoral scanner (IOS) and a conventional impression for comparison with a reference aid.
Four steel spheres were reversibly luted in the mandibular (n = 50) with a metallic reference aid at maximum mouth opening (MMO). Two digital impressions (Trios3), at MMO and at slightly mouth opening SMO and a conventional impression (Impregum), were taken as the measuring accuracy of the reference structure was already known. Difference between MMO-SMO for digital impressions and deviations between digital and conventional (SMO) were calculated. Furthermore, the angle between the normal vectors of two constructed planes was measured. Statistical analysis was performed with SPSS25.
Deviations for linear distances ranged from -1 ± 3 μm up to 17 ± 78 μm (digital impressions, MMO-SMO), from 19 ± 16 μm up to 132 ± 90 μm (digital impressions, SMO), and from 28 ± 17 μm up to 60 ± 52 μm (conventional impressions, SMO). There were no significant differences for digital impressions (MMO-SMO), and there were significant differences between the conventional and digital impressions at SMO.
Based on the results of the present study, no mandibular deformation could be detected during mouth opening with regard to the digital impressions. The results were rather within the measuring tolerance of the intraoral scanner.
Based on the present study, no deformation of the mandibular during mouth opening could be observed at the level previously assumed. Therewith related, dental techniques related to a possible mandibular deformation therefore should be reconsidered.
由于文献中部分结果差异较大,本研究旨在通过口内扫描仪(IOS)和传统印模来比较参考辅助物,以调查开口过程中下颌骨是否发生变形。
在最大开口位(MMO)时,将四个钢球通过金属参考辅助物可逆地黏附于下颌骨(n = 50)。在 MMO 和稍开口位(SMO)下,分别进行数字化印模(Trios3)和传统印模(Impregum),因为参考结构的测量精度已经确定。计算数字印模的 MMO-SMO 差值以及数字和传统印模(SMO)之间的偏差。此外,还测量了两个构建平面的法向量之间的角度。使用 SPSS25 进行统计分析。
线性距离的偏差范围为-1 ± 3μm 至 17 ± 78μm(数字印模,MMO-SMO),19 ± 16μm 至 132 ± 90μm(数字印模,SMO)和 28 ± 17μm 至 60 ± 52μm(传统印模,SMO)。数字印模(MMO-SMO)之间无显著差异,而 SMO 时传统印模和数字印模之间存在显著差异。
基于本研究结果,在开口过程中,数字印模无法检测到下颌骨变形。结果在口内扫描仪的测量公差范围内。
基于本研究,在之前假设的水平上,开口过程中下颌骨未发生变形。因此,与可能的下颌骨变形相关的牙科技术应重新考虑。