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用于正畸目的的印模的体外准确性,通过常规和打印机工作流程获得。

In-vitro accuracy of casts for orthodontic purposes obtained by a conventional and by a printer workflow.

机构信息

Department of Prosthodontics and Biomaterials, RWTH Aachen University Hospital, Aachen, Germany.

Department of Oral and Maxillofacial Surgery, RWTH Aachen University Hospital, Aachen, Germany.

出版信息

PLoS One. 2023 Mar 15;18(3):e0282840. doi: 10.1371/journal.pone.0282840. eCollection 2023.

Abstract

This in-vitro study was designed to investigate whether conventionally produced casts and printed casts for orthodontic purposes show comparable full-arch accuracy. To produce casts, either a conventional impression or a digital data set is needed. A fully dentate all ceramic master cast was digitized with an industrial scanner to obtain a digital reference cast [REF]. Intraoral scans [IOS] and alginate impressions were taken from the master cast so that ten printed and ten gypsum casts were obtained. The printed casts [DLP] were digitized by an industrial scanner and as well as the gypsum casts [GYPSUM]. The following absolute mean trueness evaluations by superimposition were accomplished: [REF vs. GYPSUM]; [REF vs. DLP]; [REF vs. IOS]; [IOS vs. DLP]. For precision analysis the data sets of [GYPSUM], [IOS] and [DLP] were available. The absolute mean trueness values were 68 μm ± 15 μm for [REF vs. GYPSUM], 46 μm ± 4 μm for [REF vs. DLP], 20 μm ± 2 μm for [REF vs. IOS] and 41 μm ± 4 μm for [IOS vs. DLP]. [REF vs. GYPSUM] and [REF vs. DLP], [REF vs. IOS], [REF vs. DLP] and [IOS vs. DLP] showed statistically significant differences. The precision values were 56 μm ± 17 μm for [GYPSUM], 25 μm ± 9 μm for [DLP] and 12 μm ± 2 μm for [IOS] and differed significantly among each other. In the present study the print workflow revealed superior results in comparison to the conventional workflow. Due to contrary deviations in the [REF vs. IOS] and the [IOS vs. DLP] data sets the overall trueness deviations was enhanced.

摘要

本体外研究旨在探究传统印模制取的石膏模型和正畸用数字化模型的全牙弓精度是否具有可比性。制取模型需要传统印模或数字印模。全牙列的氧化锆全瓷模型经工业扫描仪数字化,获得数字化参考模型[REF]。从主模型制取口内扫描[IOS]和藻酸盐印模,得到 10 个石膏模型和 10 个数字化模型。数字化模型[DLP]和石膏模型[GYPSUM]经工业扫描仪扫描,然后分析数据。通过叠加完成以下绝对平均准确性评价:[REF 与 GYPSUM];[REF 与 DLP];[REF 与 IOS];[IOS 与 DLP]。为了进行精密度分析,[GYPSUM]、[IOS]和[DLP]的数据集可用。绝对平均准确性值分别为[REF 与 GYPSUM]为 68μm±15μm、[REF 与 DLP]为 46μm±4μm、[REF 与 IOS]为 20μm±2μm、[IOS 与 DLP]为 41μm±4μm。[REF 与 GYPSUM]和[REF 与 DLP]、[REF 与 IOS]、[REF 与 DLP]和[IOS 与 DLP]之间存在统计学差异。精密度值分别为[GYPSUM]为 56μm±17μm、[DLP]为 25μm±9μm、[IOS]为 12μm±2μm,彼此之间存在显著差异。在本研究中,与传统工作流程相比,打印工作流程显示出更好的结果。由于[REF 与 IOS]和[IOS 与 DLP]数据集存在相反的偏差,整体准确性偏差增加。

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