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使用口内扫描仪进行光学咬合间记录的准确性。

Accuracy of optical interocclusal registration using an intraoral scanner.

作者信息

Okamoto Mami, Tanabe Norimasa, Fukazawa Shota, Oyamada Yutaro, Kondo Hisatomo

机构信息

Department of Prosthodontics and Oral Implantology, School of Dentistry, Iwate Medical University, Morioka, Japan.

出版信息

J Prosthodont Res. 2023 Oct 13;67(4):619-625. doi: 10.2186/jpr.JPR_D_22_00213. Epub 2023 Mar 25.

Abstract

PURPOSE

This study aimed to clarify the effect of occlusal force on appropriate optical interocclusal registration in clinical practice, considering periodontal ligament and jawbone deformation.

METHODS

Forty participants with natural, healthy dentition were enrolled (19 men and 21 women; mean age, 27.7 ± 2.0 years). A TRIOS3 intraoral scanner was used to scan the right lateral first premolar to the second molar areas of the upper and lower jaws. During scanning for interocclusal registration, participants were instructed to "bite normally," "bite lightly," and "bite strongly" to obtain data for the three occlusal patterns. The standard triangulated language (STL) data for each occlusion condition were superimposed using the appropriate software, following which the tooth displacement was calculated. The conventional method was also used to record the occlusal contact area for a silicone model using a dental contact analyzer.

RESULTS

Tooth displacement was significantly lower for the strong-bite condition than for the weak-bite condition (0.018 mm vs. 0.028 mm, P<0.05). As the occlusal force increased, the occlusal contact area also increased, and significant differences were observed among the different occlusal conditions (P<0.05).

CONCLUSIONS

Occlusal contact area changed depending on the bite force when using the silicone impression or optical intraoral scanning methods. Moreover, using optical impression methods in "strong bite force" may reduce the deviation and allow for stable interocclusal registration.

摘要

目的

本研究旨在阐明在临床实践中,考虑到牙周膜和颌骨变形,咬合力对合适的光学颌间记录的影响。

方法

招募了40名天然牙列健康的参与者(19名男性和21名女性;平均年龄27.7±2.0岁)。使用TRIOS3口腔内扫描仪对上颌和下颌右侧第一前磨牙至第二磨牙区域进行扫描。在进行颌间记录扫描时,指导参与者“正常咬合”“轻轻咬合”和“用力咬合”,以获取三种咬合模式的数据。使用适当的软件对每种咬合状况的标准三角语言(STL)数据进行叠加,然后计算牙齿位移。还使用传统方法通过牙科接触分析仪记录硅树脂模型的咬合接触面积。

结果

用力咬合状况下的牙齿位移明显低于轻轻咬合状况(0.018毫米对0.028毫米,P<0.05)。随着咬合力增加,咬合接触面积也增加,并且在不同咬合状况之间观察到显著差异(P<0.05)。

结论

使用硅树脂印模或光学口腔内扫描方法时,咬合接触面积会根据咬合力而变化。此外,在“用力咬合”时使用光学印模方法可能会减少偏差并实现稳定的颌间记录。

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