Comparative Strength Study of Indirect Permanent Restorations: 3D-Printed, Milled, and Conventional Dental Composites.

IF 1.7 Q2 MEDICINE, GENERAL & INTERNAL Clinics and Practice Pub Date : 2024-09-20 DOI:10.3390/clinpract14050154
João Paulo Mendes Tribst, Adelheid Veerman, Gabriel Kalil Rocha Pereira, Cornelis Johannes Kleverlaan, Amanda Maria de Oliveira Dal Piva
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Abstract

Background/Objectives: Limited research has been performed to assess the strength of resin-bonded 3D-printed restorations. Based on that, this study investigates the impact of different manufacturing methods on the fracture load of indirect composite restorations (ICRs) following an aging process. Methods: Three manufacturing techniques-conventional (CRC), milled (MRC), and printed (PRC)-were evaluated using 60 specimens, each with a diameter of 10 mm and a thickness of 1.0 mm. Sandblasting with Al2O3 particles was employed to optimize the bonding process, significantly influencing surface roughness parameters (Ra, Rz, RSm). All specimens were bonded to the dentin analog using composite resin cement and subjected to either 10,000 thermocycles (TC) or storage (ST) at 37 °C in distilled water. Fracture load assessments were performed using a universal testing machine. A finite element analysis was conducted to assess stress distribution. Results: Two-way ANOVA results indicated that the manufacturing method significantly affected mean fracture load values (p < 0.001), with PRC showing the highest mean fracture load (4185 ± 914 N), followed by MRC (2495 ± 941 N) and CRC (599 ± 292 N). The aging protocol did not have a significant impact on fracture load. Conclusions: This study revealed that 3D-printed resin composite exhibited comparable strength to milled resin composite when adhesively cemented, suggesting it is a promising option for indirect composite restorations based on its mechanical performance. However, further research is needed to evaluate its bond strength and optimal surface treatment methods to prevent early debonding.

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间接永久修复体的强度比较研究:三维打印、研磨和传统牙科复合材料。
背景/目的:对树脂粘结三维打印修复体强度的评估研究有限。在此基础上,本研究调查了不同制造方法对间接复合材料修复体(ICR)在老化过程中的断裂负荷的影响。方法:使用 60 个直径为 10 毫米、厚度为 1.0 毫米的试样,对传统(CRC)、研磨(MRC)和印刷(PRC)三种制造技术进行了评估。采用 Al2O3 粒子喷砂优化粘结过程,对表面粗糙度参数(Ra、Rz、RSm)有显著影响。所有试样均使用复合树脂水泥粘接到牙本质模拟物上,并在 37 °C 的蒸馏水中进行 10,000 次热循环(TC)或储存(ST)。使用万能试验机进行断裂载荷评估。进行有限元分析以评估应力分布。结果双向方差分析结果表明,制造方法对平均断裂载荷值有显著影响(p < 0.001),PRC 的平均断裂载荷最高(4185 ± 914 N),其次是 MRC(2495 ± 941 N)和 CRC(599 ± 292 N)。老化方案对骨折载荷没有显著影响。结论该研究表明,三维打印树脂复合材料在粘接固结时的强度与研磨树脂复合材料相当,这表明基于其机械性能,三维打印树脂复合材料是一种很有前景的间接复合材料修复体。然而,还需要进一步的研究来评估其粘接强度和最佳表面处理方法,以防止早期脱粘。
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来源期刊
Clinics and Practice
Clinics and Practice MEDICINE, GENERAL & INTERNAL-
CiteScore
2.60
自引率
4.30%
发文量
91
审稿时长
10 weeks
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