Effect of internal structures on the accuracy of 3D printed full-arch dentition preparation models in different printing systems.

IF 2.7 3区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Advanced Prosthodontics Pub Date : 2023-06-01 DOI:10.4047/jap.2023.15.3.145
Teng Ma, Tiwu Peng, Yang Lin, Mindi Zhang, Guanghui Ren
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Abstract

Purpose: The objective of this study was to investigate how internal structures influence the overall and marginal accuracy of full arch preparations fabricated through additive manufacturing in different printing systems.

Materials and methods: A full-arch preparation digital model was set up with three internal designs, including solid, hollow, and grid. These were printed using three different resin printers with nine models in each group. After scanning, each data was imported into the 3D data processing software together with the master cast, aligned and trimmed, and then put into the 3D data analysis software again to compare the overall and marginal deviation whose results are expressed using root mean square values and color maps. To evaluate the trueness of the resin model, the test data and reference data were compared, and the precision was evaluated by comparing the test data sets. Color maps were observed for qualitative analysis. Data were statistically analyzed by one-way analysis of variance and Bonferroni method was used for post hoc comparison (α = .05).

Results: The influence of different internal structures on the accuracy of 3D printed resin models varied significantly (P < .05). Solid and grid models showed better accuracy, while the hollow model exhibited poor accuracy. The color maps show that the resin models have a tendency to shrink inwards.

Conclusion: The internal structure design influences the accuracy of the 3D printing model, and the effect varies in different printing systems. Irrespective of the kind of printing system, the printing accuracy of hollow model was observed to be worse than those of solid and grid models.

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不同打印系统下内部结构对3D打印全弓牙列制备模型精度的影响。
目的:本研究的目的是研究内部结构如何影响在不同的打印系统中通过增材制造制造的全弓制剂的整体和边缘精度。材料与方法:建立全拱制备数字模型,采用实体、空心、网格三种内部设计。这些模型是用三种不同的树脂打印机打印的,每组有9个模型。扫描完成后,将各数据导入三维数据处理软件,并对其进行主投、准、裁剪,再导入三维数据分析软件,比较总体偏差和边际偏差,结果用均方根值和彩色图表示。为了评估树脂模型的真实性,将测试数据与参考数据进行比较,并通过比较测试数据集来评估精度。观察彩色图进行定性分析。资料采用单因素方差分析进行统计学分析,事后比较采用Bonferroni法(α = 0.05)。结果:不同内部结构对3D打印树脂模型精度的影响差异有统计学意义(P < 0.05)。实体模型和网格模型精度较好,空心模型精度较差。彩色图显示树脂模型有向内收缩的趋势。结论:内部结构设计影响3D打印模型的精度,并且在不同的打印系统中效果不同。无论哪种打印系统,空心模型的打印精度都比实体模型和网格模型差。
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来源期刊
Journal of Advanced Prosthodontics
Journal of Advanced Prosthodontics DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
4.70
自引率
3.80%
发文量
25
期刊介绍: This journal aims to convey scientific and clinical progress in the field of prosthodontics and its related areas to many dental communities concerned with esthetic and functional restorations, occlusion, implants, prostheses, and biomaterials related to prosthodontics. This journal publishes • Original research data of high scientific merit in the field of diagnosis, function, esthetics and stomatognathic physiology related to prosthodontic rehabilitation, physiology and mechanics of occlusion, mechanical and biologic aspects of prosthodontic materials including dental implants. • Review articles by experts on controversies and new developments in prosthodontics. • Case reports if they provide or document new fundamental knowledge.
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