Title of article :
Comparison of Microleakage and Thickness of Resin Cement in Ceramic Inlays with Various Temperatures
Author/Authors :
Alaghemand, Homayoun Department of Operative Dentistry - Faculty of Dentistry - Babol University of Medical Sciences, Babol , Abolghasemzadeh, Faezeh Department of Operative Dentistry - Faculty of Dentistry - Babol University of Medical Sciences, Babol , Pakdel, Farzaneh Department of Oral Medicine - Faculty of Dentistry - Tabriz University of Medical Sciences, Tabriz , Judi Chelan, Reza DentalMaterial Research Center - Member of Research Committee of Medical Students - Student of dentistry - Faculty of Dentistry - Babol University of Medical Sciences, Babol
Abstract :
Background and aims. Microleakage is still one of the major problems of composite-based restorations. This study
compared the microleakage and thickness of resin cement in ceramic inlays with various temperatures.
Materials and methods. Class V cavities were prepared on the buccal and lingual aspects of thirty human molars with
occlusal margins in enamel and gingival margins in dentin (3 mm wide, 5 mm long and 2 mm deep). Laboratory-made
inlays (LMI) were used for buccal cavities, and CAD/CAM inlays (CMI) were used for lingual cavities. All the cavities
were divided into six groups (n=10): 1) LMI at -5°C; 2) LMI at 50°C; 3) LMI at room temperature (25°C); 4) CMI at -5°C;
5) CMI at 50°C; 6) CMI at room temperature (25°C). Inlays were bonded to cavities in a pulp pressure- and temperaturesimulating device. After thermocycling and dye penetration, the teeth were divided into two mesiodistal halves. Amount of
dye penetration and film thickness were measured under a stereomicroscope and analyzed with Kruskal-Wallis, Wilcoxon
and Spearman's correlation tests ( = 0.05).
Results. There were no statistically significant differences in leakage between different inlay temperatures (P > 0.05). The
mean cement thickness in laboratory-made inlays (gingival margin, 83.7 ± 11 and occlusal margin, 84.7 ± 19) was greater
than that in CAD/CAM inlays (gingival margin, 69 ± 16 and occlusal margin, 84.7 ± 16). No correlation was found between cement thickness and microleakage either in enamel or dentin for any of the ceramic systems.
Conclusion. Differences in inlay temperature had no effect on microleakage. CAD/CAM inlays had lower cement thickness than laboratory-made inlays, but this was not related to their microleakage.
Keywords :
microleakage , film thickness , CAD-CAM , ceramic
Journal title :
Astroparticle Physics