E Lima Renally Bezerra Wanderley, De Vasconcelos Laís César, Pontual Maria Luiza, Meireles Sônia Saeger, Maciel Andrade Ana Karina, Duarte Rosângela Marques
Department of Restorative Dentistry, Piracicaba Dental School, State University of Campinas, Campinas, São Paulo, Brazil.
Department of Clinical and Preventive, Dentistry, Federal University of Pernambuco, Recife, Pernambuco, Brazil.
Indian J Dent Res. 2019 May-Jun;30(3):408-413. doi: 10.4103/ijdr.IJDR_72_17.
The aim of this study is to evaluate the effect of different doses of the ionizing radiation (0 Gy, 10 Gy, 30 Gy, and 60 Gy) on the physical properties of dental materials.
Disc-shaped samples from each material (Ketac Molar Easymix, Vitro Molar, Vitremer, Vitro Fil Lc, Filtek Z 250 and Filtek Z 350) were made for water solubility, sorption analysis (n = 20), microhardness (n = 20), and surface roughness analysis (n = 24). Specimens were divided into four groups, according to radiation dose: control group (0 Gy), 10 Gy, 30 Gy, and 60 Gy. For water solubility and sorption analysis, the specimens were irradiated and were stored for 21 days to calculate the water solubility and sorption values. Microhardness analysis was carried out before and after irradiation doses. For surface roughness analysis, the specimens were submitted to brushing test, and after 24 h, initial surface roughness analysis was made in a rugosimeter. Subsequently, the samples were irradiated and final surface roughness analysis was made. The original water solubility and sorption, surface roughness, and microhardness values were subjected to ANOVA two-way statistical analysis and Paired t-test and Tukey post hoc test (α = 0.05), respectively.
Water solubility and sorption values, and surface roughness values presented statistical difference between groups (0, 10, 30 e 60 Gy) for all materials.
High doses of ionizing radiation (30 Gy and 60 Gy) increased the surface roughness, sorption, and solubility for the most materials.
本研究旨在评估不同剂量的电离辐射(0 Gy、10 Gy、30 Gy和60 Gy)对牙科材料物理性能的影响。
从每种材料(Ketac Molar Easymix、Vitremer、Vitremer、Vitro Fil Lc、Filtek Z 250和Filtek Z 350)制备圆盘形样本,用于水溶性、吸附分析(n = 20)、显微硬度(n = 20)和表面粗糙度分析(n = 24)。根据辐射剂量将标本分为四组:对照组(0 Gy)、10 Gy、30 Gy和60 Gy。对于水溶性和吸附分析,标本经辐照后储存21天以计算水溶性和吸附值。在辐照剂量前后进行显微硬度分析。对于表面粗糙度分析,标本进行刷牙试验,24小时后在粗糙度仪上进行初始表面粗糙度分析。随后,对样本进行辐照并进行最终表面粗糙度分析。原始的水溶性和吸附、表面粗糙度和显微硬度值分别进行双向方差分析、配对t检验和Tukey事后检验(α = 0.05)。
所有材料在各组(0、10、30和60 Gy)之间的水溶性、吸附值和表面粗糙度值均存在统计学差异。
高剂量的电离辐射(30 Gy和60 Gy)会增加大多数材料的表面粗糙度、吸附和溶解性。