Assessment of effect of accelerated aging on interim fixed dental materials using digital technologies.

IF 2.7 3区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Advanced Prosthodontics Pub Date : 2022-12-01 DOI:10.4047/jap.2022.14.6.360
Omar Alageel, Omar Alsadon, Haitham Almansour, Abdullah Alshehri, Fares Alhabbad, Majed Alsarani
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引用次数: 2

Abstract

Purpose: This study assessed the physical and mechanical properties of interim crown materials fabricated using various digital techniques after accelerated aging.

Materials and methods: Three groups of interim dental restorative materials (N = 20) were tested. The first group (CO) was fabricated using a conventional manual method. The second group (ML) was prepared from prefabricated resin blocks for the milling method and cut into specimen sizes using a cutting disc. The third group (3D) was additively manufactured using a digital light-processing (DLP) 3D printer. Aging acceleration treatments using toothbrushing and thermocycling simulators were applied to half of the specimens corresponding to three years of usage in the oral environment (N = 10). Surface roughness (Ra), Vickers microhardness, 3-point bending, sorption, and solubility tests were performed. A 2-way analysis of variance (ANOVA) and Fisher's multiple comparison test were used to compare the results among the groups.

Results: The mean surface roughness (Ra) of the resin after accelerated aging was significantly higher in the CO and ML groups than that before aging, but not in the 3D group. All groups showed reduced hardness after accelerated aging. The flexural strength values were highest in the 3D group, followed by the ML and CO groups after accelerated aging. Accelerated aging significantly reduced water sorption in the ML group.

Conclusion: According to the tested material and 3D printer type, both 3D-printed and milled interim restoration resins showed higher flexural strength and modulus, and lower surface roughness than those prepared by the conventional method after accelerated aging.

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利用数字技术评估临时固定牙材料加速老化的影响。
目的:研究各种数字技术制备的过渡冠材料在加速老化后的物理力学性能。材料与方法:采用3组临时牙体修复材料(N = 20)进行试验。第一组(CO)是用传统的手工方法制备的。第二组(ML)由预制树脂块制备,用于铣削方法,并使用切割盘切割成样品尺寸。第三组(3D)使用数字光处理(DLP) 3D打印机进行增材制造。在口腔环境中使用3年的一半标本(N = 10)应用牙刷和热循环模拟器加速老化处理。进行表面粗糙度(Ra)、维氏显微硬度、三点弯曲、吸附和溶解度测试。组间比较采用双向方差分析(ANOVA)和Fisher多重比较检验。结果:CO和ML组树脂加速老化后的平均表面粗糙度(Ra)明显高于老化前,而3D组无明显差异。加速时效后各组硬度均降低。加速老化后,3D组抗弯强度最高,ML组次之,CO组次之。ML组加速老化显著降低了吸水率。结论:根据测试材料和3D打印机类型,3D打印和铣削的中期修复树脂在加速老化后均比常规方法制备的树脂具有更高的抗弯强度和模量,表面粗糙度更低。
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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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