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- W3013816405 abstract "Background: The most frequently used monomer in commercial composite resins is bisphenol A glycidyl dimethacrylate. Bisphenol A glycidyl dimethacrylate free monomer and the long chain dimer acid based monomer were considered as an alternative method to improve mechanical and physical properties of composite resins. Objective: To study the surface roughness of different nanohybrid composites with different monomer compositions after finishing and polishing with different polishing systems. Materials and Methods: 72 composite disk specimens were prepared and divided into 3 groups (n=24) according to the resin composite that were used ( harmonize kerr , venus diamond heraeus kulzer and n'durance septodont ). Each group was subdivided into 4 subgroups (n=6) according to the polishing technique that was used ( Jiffy natural universal wheels ultradent , sof-lex spiral w heels 3m espe , hiluster kerr or enhance system dentsply ). Atomic force microscope was used to measure surface roughness. Results: There was statistical significant difference in surface roughness measuring among different n 'durance , v enus diamond and h armonize groups (Kruskal Wallis Test p<0.05). Post hock pairwise comparison revealed that v enus diamond showed statistically significant higher surface roughness when compared with either n 'durance and h armonize . Among the polishing systems, j iffy n atural u niversal wheels produce the least surface roughness. Conclusion: Different monomer compositions may have direct effect on the final surface polish of the restorative materials. Clinical significance: The use of jiffy natural universal wheels may be found to result in the smoothest surface finish with the least clinical steps." @default.
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- W3013816405 date "2020-03-01" @default.
- W3013816405 modified "2023-09-27" @default.
- W3013816405 title "Surface Roughness of Nanohybrid Composites with Different Monomers after Finishing and Polishing with Different Polishing Systems" @default.
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- W3013816405 doi "https://doi.org/10.4028/www.scientific.net/kem.835.41" @default.
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