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基于多源数据配准的上颌骨缺损的 3D 数字模型的生成和评估:一项初步临床研究。

Generation and evaluation of 3D digital casts of maxillary defects based on multisource data registration: A pilot clinical study.

机构信息

Lecturer, Department of Prosthodontics, School and Hospital of Stomatology, Peking University, National Engineering Laboratory for Digital and Material Technology of Stomatology, Beijing Key Laboratory of Digital Stomatology, Beijing, China.

Graduate student, Department of Prosthodontics, School and Hospital of Stomatology, Peking University, National Engineering Laboratory for Digital and Material Technology of Stomatology, Beijing Key Laboratory of Digital Stomatology, Beijing, China.

出版信息

J Prosthet Dent. 2017 Dec;118(6):790-795. doi: 10.1016/j.prosdent.2017.01.014. Epub 2017 Apr 25.

Abstract

STATEMENT OF PROBLEM

Digital techniques are not clinically applied for 1-piece maxillary prostheses containing an obturator and removable partial denture retained by the remaining teeth because of the difficulty in obtaining sufficiently accurate 3-dimensional (3D) images.

PURPOSE

The purpose of this pilot clinical study was to generate 3D digital casts of maxillary defects, including the defective region and the maxillary dentition, based on multisource data registration and to evaluate their effectiveness.

MATERIAL AND METHODS

Twelve participants with maxillary defects were selected. The maxillofacial region was scanned with spiral computer tomography (CT), and the maxillary arch and palate were scanned using an intraoral optical scanner. The 3D images from the CT and intraoral scanner were registered and merged to form a 3D digital cast of the maxillary defect containing the anatomic structures needed for the maxillary prosthesis. This included the defect cavity, maxillary dentition, and palate. Traditional silicone impressions were also made, and stone casts were poured. The accuracy of the digital cast in comparison with that of the stone cast was evaluated by measuring the distance between 4 anatomic landmarks. Differences and consistencies were assessed using paired Student t tests and the intraclass correlation coefficient (ICC). In 3 participants, physical resin casts were produced by rapid prototyping from digital casts. Based on the resin casts, maxillary prostheses were fabricated by using conventional methods and then evaluated in the participants to assess the clinical applicability of the digital casts.

RESULTS

Digital casts of the maxillary defects were generated and contained all the anatomic details needed for the maxillary prosthesis. Comparing the digital and stone casts, a paired Student t test indicated that differences in the linear distances between landmarks were not statistically significant (P>.05). High ICC values (0.977 to 0.998) for the interlandmark distances further indicated the high degree of consistency between the digital and stone casts. The maxillary prostheses showed good clinical effectiveness, indicating that the corresponding digital casts met the requirements for clinical application.

CONCLUSIONS

Based on multisource data from spiral CT and the intraoral scanner, 3D digital casts of maxillary defects were generated using the registration technique. These casts were consistent with conventional stone casts in terms of accuracy and were suitable for clinical use.

摘要

问题陈述

由于难以获得足够精确的三维(3D)图像,因此,对于包含阻塞器和由剩余牙齿保留的可摘局部义齿的 1 件式上颌义齿,并未在临床上应用数字技术。

目的

本初步临床研究的目的是基于多源数据配准生成上颌缺损的 3D 数字模型,包括缺损区域和上颌牙列,并评估其效果。

材料与方法

选择 12 名上颌缺损患者。使用螺旋计算机断层扫描(CT)对颌面区域进行扫描,使用口腔内光学扫描仪对上颌弓和腭进行扫描。将 CT 和口腔内扫描仪的 3D 图像进行配准和合并,形成包含上颌义齿所需解剖结构的上颌缺损的 3D 数字模型,包括缺损腔、上颌牙列和腭。还进行了传统硅橡胶印模,并浇铸了石膏模型。通过测量 4 个解剖学标志点之间的距离,评估数字模型与石膏模型的准确性。使用配对学生 t 检验和组内相关系数(ICC)评估差异和一致性。在 3 名患者中,通过快速原型制作从数字模型生成物理树脂模型。基于树脂模型,使用常规方法制作上颌义齿,并在患者中进行评估,以评估数字模型的临床适用性。

结果

成功生成了包含上颌义齿所需所有解剖细节的上颌缺损的数字模型。与石膏模型相比,配对学生 t 检验表明标志点之间线性距离的差异无统计学意义(P>.05)。标志点间距离的高 ICC 值(0.977 至 0.998)进一步表明数字模型和石膏模型之间具有高度的一致性。上颌义齿具有良好的临床效果,表明相应的数字模型满足临床应用的要求。

结论

基于螺旋 CT 和口腔内扫描仪的多源数据,使用配准技术生成了上颌缺损的 3D 数字模型。这些模型在准确性方面与传统石膏模型一致,适用于临床应用。

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