Achieving new excellence in an augmented reality dental education system.

IF 3.4 3区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Dental Sciences Pub Date : 2024-12-01 Epub Date: 2024-08-16 DOI:10.1016/j.jds.2024.07.023
Pei-Ling Lai, Chih-Te Liu, Po-Sung Fu, Jen-Hao Chen, Ting-Hsun Lan, Jen-Chyan Wang, Chun-Cheng Hung
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Abstract

Background/purpose: SimEx-Plus (EPED. Inc) was already a mature augmented reality (AR) dental training simulator that allowed students to have a high quality dental education practice. Now the EPCAD software has been further developed into a comprehensive computer-aided design software. It helps relevant professionals learn how to create digital fixed prosthesis in a virtual environment. This study used the newly developed EPCAD software that was integrated within the SimEx-Plus to design dental restorations then digital output milling restorations. We hope that the SimEx-Plus AR dental training simulator can achieve the multi-purpose function in one machine.

Materials and methods: A right maxillary central incisor was prepared in the standard dental model. The restorations were designed by EPCAD software integrated with the SimEx-Plus and milled by a 4-axis dental milling machine (N4+, vhf camfacture AG). The internal gap of the restoration was evaluated.

Results: The internal gaps of the crowns set on the right maxillary central incisor were among 68.27-89.80 μm. The different setting for digital output did not influence the internal gap (P 0.05, One-Way ANOVA). However, the internal gap on the palatal side was larger than that on the labial, mesial, distal, and incisal surfaces (P < 0.05, One-Way ANOVA).

Conclusion: The new software EPCAD that was integrated within the SimEx-Plus AR dental training simulator could design restorations, and the designed restorations had good internal gap for clinical use. The professionals can learn tooth preparation and digital restoration fabrication by the SimEx-Plus AR dental training system.

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在增强现实牙科教育系统中实现新的卓越。
背景/用途:SimEx-Plus公司已经是一个成熟的增强现实(AR)牙科培训模拟器,让学生有一个高质量的牙科教育实践。目前EPCAD软件已进一步发展成为综合性的计算机辅助设计软件。它帮助相关专业人员学习如何在虚拟环境中创建数字固定假体。本研究使用了新开发的EPCAD软件,该软件集成在SimEx-Plus中,用于设计牙科修复体,然后进行数字输出铣削修复体。我们希望SimEx-Plus AR牙科训练模拟器能够实现一机多用。材料与方法:在标准牙模型上制备右上颌骨中切牙。修复体由集成SimEx-Plus的EPCAD软件设计,并由4轴牙铣床(N4+, vhf制造AG)铣削。评估修复体的内部间隙。结果:右上颌中切牙冠的内间隙为68.27 ~ 89.80 μm。数字输出的不同设置对内部差距没有影响(p0.05,单向方差分析)。而腭侧的内间隙大于唇、中、远、切表面的内间隙(P)。结论:SimEx-Plus AR牙训练模拟器集成了新的EPCAD软件,可以设计修复体,设计的修复体具有良好的内间隙,可用于临床。专业人员可以通过SimEx-Plus AR牙科培训系统学习牙齿准备和数字修复制作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Dental Sciences
Journal of Dental Sciences 医学-牙科与口腔外科
CiteScore
5.10
自引率
14.30%
发文量
348
审稿时长
6 days
期刊介绍: he Journal of Dental Sciences (JDS), published quarterly, is the official and open access publication of the Association for Dental Sciences of the Republic of China (ADS-ROC). The precedent journal of the JDS is the Chinese Dental Journal (CDJ) which had already been covered by MEDLINE in 1988. As the CDJ continued to prove its importance in the region, the ADS-ROC decided to move to the international community by publishing an English journal. Hence, the birth of the JDS in 2006. The JDS is indexed in the SCI Expanded since 2008. It is also indexed in Scopus, and EMCare, ScienceDirect, SIIC Data Bases. The topics covered by the JDS include all fields of basic and clinical dentistry. Some manuscripts focusing on the study of certain endemic diseases such as dental caries and periodontal diseases in particular regions of any country as well as oral pre-cancers, oral cancers, and oral submucous fibrosis related to betel nut chewing habit are also considered for publication. Besides, the JDS also publishes articles about the efficacy of a new treatment modality on oral verrucous hyperplasia or early oral squamous cell carcinoma.
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