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与CAD/CAM铣削和传统临时树脂相比,3D打印临时牙冠和固定义齿树脂的物理和机械性能:系统评价与Meta分析

Physical and Mechanical Properties of 3D-Printed Provisional Crowns and Fixed Dental Prosthesis Resins Compared to CAD/CAM Milled and Conventional Provisional Resins: A Systematic Review and Meta-Analysis.

作者信息

Jain Saurabh, Sayed Mohammed E, Shetty Mallika, Alqahtani Saeed M, Al Wadei Mohammed Hussain Dafer, Gupta Shilpi Gilra, Othman Ahlam Abdulsalam Ahmed, Alshehri Abdulkarim Hussain, Alqarni Hatem, Mobarki Abdulaziz Hussain, Motlaq Khalid, Bakmani Haifa F, Zain Asma A, Hakami Abdullah J, Sheayria Moayad F

机构信息

Department of Prosthetic Dental Sciences, College of Dentistry, Jazan University, Jazan 45142, Saudi Arabia.

Rutgers School of Dental Medicine, Rutgers University, Newark, NJ 07103, USA.

出版信息

Polymers (Basel). 2022 Jun 30;14(13):2691. doi: 10.3390/polym14132691.

Abstract

Newly introduced provisional crowns and fixed dental prostheses (FDP) materials should exhibit good physical and mechanical properties necessary to serve the purpose of their fabrication. The aim of this systematic literature review and meta-analysis is to evaluate the articles comparing the physical and mechanical properties of 3D-printed provisional crown and FDP resin materials with CAD/CAM (Computer-Aided Designing/Computer-Aided Manufacturing) milled and conventional provisional resins. Indexed English literature up to April 2022 was systematically searched for articles using the following electronic databases: MEDLINE-PubMed, Web of Science (core collection), Scopus, and the Cochrane library. This systematic review was structured based on the guidelines given by the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA). The focused PICO/PECO (Participant, Intervention/exposure, Comparison, Outcome) question was: 'Do 3D-printed (P) provisional crowns and FDPs (I) have similar physical and mechanical properties (O) when compared to CAD/CAM milled and other conventionally fabricated ones (C)'. Out of eight hundred and ninety-six titles, which were recognized after a primary search, twenty-five articles were included in the qualitative analysis, and their quality analysis was performed using the modified CONSORT scale. Due to the heterogeneity of the studies, only twelve articles were included for quantitative analysis. Within the limitations of this study, it can be concluded that 3D-printed provisional crown and FDP resin materials have superior mechanical properties but inferior physical properties compared to CAD/CAM milled and other conventionally fabricated ones. Three-dimensionally printed provisional crowns and FDP materials can be used as an alternative to conventional and CAD/CAM milled long-term provisional materials.

摘要

新引入的临时牙冠和固定义齿(FDP)材料应具备良好的物理和机械性能,以满足其制作目的。本系统文献综述和荟萃分析的目的是评估比较3D打印临时牙冠和FDP树脂材料与CAD/CAM(计算机辅助设计/计算机辅助制造)铣削及传统临时树脂的物理和机械性能的文章。使用以下电子数据库系统检索截至2022年4月的索引英文文献:MEDLINE-PubMed、科学网(核心合集)、Scopus和Cochrane图书馆。本系统综述是根据系统评价和荟萃分析的首选报告项目(PRISMA)给出的指南构建的。重点PICO/PECO(参与者、干预/暴露、比较、结果)问题是:“与CAD/CAM铣削和其他传统制作的临时牙冠及FDP相比,3D打印(P)的临时牙冠和FDP(I)是否具有相似的物理和机械性能(O)”。在初步检索后识别出的896篇标题中,25篇文章纳入定性分析,并使用修改后的CONSORT量表进行质量分析。由于研究的异质性,仅12篇文章纳入定量分析。在本研究的局限性内,可以得出结论,与CAD/CAM铣削和其他传统制作的材料相比,3D打印临时牙冠和FDP树脂材料具有优越的机械性能,但物理性能较差。三维打印的临时牙冠和FDP材料可用作传统和CAD/CAM铣削长期临时材料的替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ac4/9269394/21bfe0767b22/polymers-14-02691-g001.jpg

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