In-vitro accuracy of the virtual patient model with maxillomandibular relationship at centric occlusion using 3D-printed customized transfer key.

IF 2.5 Q2 DENTISTRY, ORAL SURGERY & MEDICINE
Anh Ho-Quynh Nguyen, Nam Cong-Nhat Huynh, Oanh Ngoc-Hoang Nguyen, Nhat Dinh-Minh Nguyen, Hai Hoang Phan, Jong-Eun Kim, Gan Jin, Khanh Hung Nguyen, Hung Trong Hoang
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Abstract

Objective: This study aimed to create a 3D-printed customized transfer key and evaluate the accuracy of the virtual patient model with maxillomandibular relationship at centric occlusion using the transfer key.

Methods: A 3D-printed transfer key was designed, combining facial and intraoral (IOS) scans. The design included components that recorded the 3D upper and lower arch at centric occlusion. The virtual patient model image was generated in-vitro using a phantom head with soft tissue simulation. Accuracy was assessed by superimposing the 3D scans with reference CBCT images and analyzing trueness and precision using root mean square (RMS) deviations.

Results: The transfer key included an intra-oral part that acts as an anterior deprogrammer to record the relationship of two dental arches at centric occlusion (CO) and an extra-oral with a rotatable cross-shaped design with two arms for locating the facial midline and the two pupils connecting line. Superimposition demonstrated high trueness (RMS: 0.51 mm for the arch regions, 0.69 mm for the whole head region, 0.85 mm in the face region) and precision (RMS: 0.41 mm for the arch regions, 0.52 mm for the entire head, 0.63 mm in the face region) significantly (p < 0.05). Minimal deviations were observed in critical areas, including the tooth and lip position, indicating that the virtual patient model was closely aligned with the CBCT reference. The dental arches achieved the highest accuracy, while slight deviations were noted in the facial regions.

Conclusions: The 3D-printed customized transfer key effectively enhanced the virtual patient model's accuracy, surpassing traditional trueness and precision methods. This novel approach offers a streamlined, patient-friendly solution for digital dental workflows.

使用3d打印定制转移密钥对中位咬合上颌骨关系虚拟患者模型的体外准确性进行研究。
目的:本研究旨在建立3d打印的定制转移键,并利用该转移键评估中位咬合中颌下颌关系虚拟患者模型的准确性。方法:设计3d打印传递键,结合面部和口腔内(IOS)扫描。设计包括记录三维上下拱在中心咬合的组件。利用模拟软组织的虚拟头部在体外生成虚拟患者模型图像。通过将三维扫描与参考CBCT图像叠加,并使用均方根(RMS)偏差分析准确性和精度来评估准确性。结果:转移键包括一个口内部分,作为前脱影器记录两个牙弓在中心咬合(CO)时的关系;一个口外部分,具有可旋转的十字形设计,具有两个手臂,用于定位面部中线和两个瞳孔连接线。叠加的准确性(弓区RMS: 0.51 mm,头部全区RMS: 0.69 mm,面部区域RMS: 0.85 mm)和精度(弓区RMS: 0.41 mm,头部全区RMS: 0.52 mm,面部区域RMS: 0.63 mm)显著提高(p)结论:3d打印定制传递键有效提高了虚拟患者模型的准确性,超越了传统的真实度和精度方法。这种新颖的方法为数字化牙科工作流程提供了一种简化的、对患者友好的解决方案。
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
BDJ Open
BDJ Open Dentistry-Dentistry (all)
CiteScore
3.70
自引率
3.30%
发文量
34
审稿时长
30 weeks
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