Influence of thickness and restorative system on the mechanical behavior of CAD/CAM minimally invasive occlusal veneers - in vitro study.

IF 1.8 4区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE International Journal of Computerized Dentistry Pub Date : 2024-05-03 DOI:10.3290/j.ijcd.b5290647
Fabio Rizzante, Edgar Maenosono, Ana Flávia Borges, Juliana Bombonatti, Sorin Teich, Adilson Furuse, Sérgio Ishikiriama
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Abstract

Aim: The aim of this study was to evaluate the physical-mechanical behavior of the occlusal veneers when subjected to thermomechanical cycling.

Materials and methods: Sixty specimens were divided into 04 groups (n=15 per group), according with the different restorative materials and thicknesses: material - lithium dissilicate LD (IPS e.max CAD, Ivoclar Vivadent) and nano- ceramic-resins NCR (ESPE Lava Ultimate, 3M); thickness - 0.6 and 1.2mm. The occlusal veneers were bonded over human flattened fresh extracted molars with dual-polymerizing luting agent (Variolink N, Ivoclar Vivadent and RelyX Ultimate 3M) using the respective adhesive system following the selective-etch technique (self-etch in dentin and total etch in enamel). The resin cement was light cured for 40 seconds each face, using a LED light cure equipment (BlueStar II, Microdont, 1100 mW/cm2). The response variables consisted of veneer survival rates (crack formation, catastrophic cracks and debonding) when subjected to thermal cycling from 5° to 55° C and simultaneous mechanical cycling performed at load intensities of 100, 200, 300, 400 and 450N for 20,000 cycles each.

Result: Data were submitted to the Kruskall Wallis test and Pairwise Comparison, adopting a significance level of 5%. NCRs presented a lower incidence of failures (p<0.05) when compared to LD. According to thickness factor, 1.2mm thick occlusal veneers withstand higher cycling loads.

Conclusion: NCR occlusal veneers with 1.2mm thickness presented superior physical-mechanical behavior than lithium disilicate and 0.6mm restorations.

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厚度和修复系统对 CAD/CAM 微创咬合贴面机械性能的影响 - 体外研究。
目的:本研究旨在评估咬合贴面在热机械循环作用下的物理机械行为:根据不同的修复材料和厚度,将 60 个样本分为 04 组(每组 15 个样本):材料 - 二硅酸锂 LD(IPS e.max CAD,Ivoclar Vivadent)和纳米陶瓷树脂 NCR(ESPE Lava Ultimate,3M);厚度 - 0.6 毫米和 1.2 毫米。采用选择性蚀刻技术(牙本质自蚀刻和珐琅质全蚀刻),使用相应的粘合剂系统,用双聚合胶合剂(Variolink N,Ivoclar Vivadent 和 RelyX Ultimate 3M)将咬合贴面粘接在人类扁平的新鲜拔出臼齿上。使用 LED 光固化设备(BlueStar II,Microdont,1100 mW/cm2)对树脂粘接剂进行光固化,每面固化 40 秒。反应变量包括单板在 5° 至 55° C 的热循环条件下的存活率(裂纹形成、灾难性裂纹和脱落),以及同时在 100、200、300、400 和 450N 的负载强度下进行的机械循环,每次循环 20000 次:数据采用 Kruskall Wallis 检验和配对比较,显著性水平为 5%。NCR 的失效率较低(p 结论:厚度为 1.2 毫米的 NCR 咬合贴面比二硅酸锂和 0.6 毫米的修复体具有更好的物理机械性能。
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来源期刊
International Journal of Computerized Dentistry
International Journal of Computerized Dentistry Dentistry-Dentistry (miscellaneous)
CiteScore
2.90
自引率
0.00%
发文量
49
期刊介绍: This journal explores the myriad innovations in the emerging field of computerized dentistry and how to integrate them into clinical practice. The bulk of the journal is devoted to the science of computer-assisted dentistry, with research articles and clinical reports on all aspects of computer-based diagnostic and therapeutic applications, with special emphasis placed on CAD/CAM and image-processing systems. Articles also address the use of computer-based communication to support patient care, assess the quality of care, and enhance clinical decision making. The journal is presented in a bilingual format, with each issue offering three types of articles: science-based, application-based, and national society reports.
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