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- W2183655678 abstract "Background and Aim: Estimation of the survival of dental materials is especially im- portant when manufacturing new materials. Thermocycling can greatly help in this respect. The purpose of this study was to evaluate the microshear bond strength of a nanofiller bonding agent with and without thermocycling in a newly invented device. Materials and Methods: In this experimental study, human third molars were sec- tioned into 1.5 mm slices after extraction and disinfection. Clearfil Tri-S nanofiller bond was applied to the dentin part of sections according to the manufacturer's in- structions. Clearfil AP-X composite resin was placed over the dentin using tubes with 0.75 mm internal diameter and one mm height and light cured. Specimens were ran- domly divided into three groups and subjected to thermocycling in a newly invented device for zero, 3000 and 5000 cycles between 5±2°C and 55±2°C. Micro-shear bond strength was measured by microtensile tester with a cross-head speed of 0.5 mm/min. Obtained data were analyzed using one-way ANOVA. Tukey's test was used for mul- tiple comparisons with a 95% confidence interval. Results: The mean micro-shear bond strength after zero, 3000 and 5000 thermal cy- cles was found to be 19.27±4.56, 17.00±6.52 and 11.58±4.64 MPa, respectively. The reduction in bond strength between zero and 3000 thermal cycles was not statistically significant (p=0.3) but this reduction between zero and 5000, as well as 3000 and 5000 cycles was statistically significant (p<0.002 and p<0.03, respectively). Conclusion: Increase in number of thermal cycles for more than 3000 reduces the micro-shear bond strength of Tri-S bonding agent." @default.
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- W2183655678 date "2013-10-01" @default.
- W2183655678 modified "2023-09-26" @default.
- W2183655678 title "Micro-shear Bond Strength of a Nanofiller Bonding agent with and without Thermocycling in a Newly Invented Device" @default.
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