新型甲基丙烯酸酯基口腔复合材料修复牙齿的抗折性体外研究

IF 0.6 Q4 DENTISTRY, ORAL SURGERY & MEDICINE
Sreenath Narayanan, M. Hegde, S. Thirunarayanan, T. Dsouza
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引用次数: 1

摘要

引言:由于牙科对更美观、更保守的方法的需求增加,复合材料有了显著的发展。对填料颗粒尺寸和负载量进行了修改,随后对树脂基质物质进行了修改。市场上已经引入了在填料中添加纳米颗粒的甲基丙烯酸酯基复合材料,提供了改进的美观性和更低的聚合收缩率。本研究旨在比较使用两种新型甲基丙烯酸酯基复合材料修复的牙齿的抗折性能以及复合材料的弯曲强度。方法:将60颗下颌前磨牙分为两组,每组10颗,实验组20颗。I组-完整的牙齿,没有任何准备(n = 10) ,第II组-预备但未修复的牙齿(n = 10) ,分别用可堆叠的纳米杂化甲基丙烯酸酯基复合材料(IPS Empress DirectTM)制备和修复的第III组牙齿和用可包装的亚微米甲基丙烯酸酯基合成材料(Brilliant EvergrowTM)制制备和恢复的第IV组牙齿。将牙齿嵌入树脂填充的PVC环中,并以0.5的十字头速度对所有组进行压缩载荷测试 mm/分钟。采用万能试验机进行三点弯曲试验,对两种复合材料的弯曲强度进行了分析。通过方差分析和Tukey post-hoc检验分析实验组之间差异的统计学意义(P<0.05)。结果:IV组的平均骨折阻力最高(1877.37 ± 494.79),第三组(1763.69 ± 392.51),第一组(1607.08 ± 283.48),并且组II具有最少的(1442.08 ± 373.66)。四组的平均骨折阻力总体上有显著差异(P = Tukey试验显示II组和IV组的骨折抵抗力差异有统计学意义(P = 0.042),其他组间无显著性差异。结论:可包装亚微米复合材料修复组的抗折性最高。可包装的亚微米甲基丙烯酸酯基复合材料也显示出比可堆叠的纳米杂化复合材料更高的弯曲强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fracture Resistance of Teeth Restored with Newer Methacrylate-Based Dental Composite Materials: An In Vitro Study
Introduction: Composite have evolved significantly due to the increase in the demand for a more esthetic and conservative approach in dentistry. Modifications have been made on the filler particle size and loading, followed by alterations in the resin matrix substance. Methacrylate-based composite with the addition of nanoparticles to the filler has been introduced in the market, providing improved esthetics and lower polymerization shrinkage. The present study was done to compare the fracture resistance of teeth restored using two newer methacrylate-based composite materials, along with the flexural strength of the composites. Methods: Sixty mandibular premolars were divided into two control groups of 10 teeth each and two experimental groups of 20 teeth. Group I − intact teeth with no preparations (n = 10), Group II − prepared but unrestored teeth (n = 10), Group III − teeth prepared and restored with a stackable nanohybrid methacrylate-based composite material (IPS Empress DirectTM), and Group IV − teeth prepared and restored with a packable submicron methacrylate-based composite material (Brilliant EverglowTM), respectively. The teeth were embedded in resin-filled PVC rings, and a compressive loading test was carried out for all groups at a cross-head speed of 0.5 mm/min. The flexural strengths of the two composite materials were also analyzed using three-point bending test using Universal Testing Machine. The statistical significance (P < 0.05) of the differences between the experimental groups was analyzed by ANOVA and Tukey post hoc test. Results: The mean fracture resistance was highest in Group IV (1877.37 ± 494.79) followed by Group III (1763.69 ± 392.51), Group I (1607.08 ± 283.48), and Group II having the least (1442.08 ± 373.66). The mean fracture resistance overall differed significantly between the four groups (P = 0.048). Tukey test showed fracture resistance differed significantly between Group II and Group IV (P = 0.042) and no significance among other groups. Conclusion: Fracture resistance was highest in the group restored with the packable submicron hybrid composite material. The packable submicron methacrylate-based composite material also showed higher flexural strength than stackable nanohybrid composite material.
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Dental Hypotheses
Dental Hypotheses DENTISTRY, ORAL SURGERY & MEDICINE-
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