Nahas Paul, Zeinoun Toni, Majzoub Zeina, Corbani Karim, Nammour Samir
Department of Restorative and Esthetic Dentistry, Lebanese University, Campus Rafic Hariri, Hadath, Beirut, Lebanon.
Department of Oral and Maxillo-Facial Surgery, Faculty of Dentistry, Lebanese University, Campus Rafic Hariri, Hadath, Beirut, Lebanon.
Biomed Res Int. 2016;2016:6507924. doi: 10.1155/2016/6507924. Epub 2016 Oct 17.
. To investigate the shear bond strength of self-adhering flowable resin composite, to dentin, after exposing it to Er:YAG laser radiation, at different energy densities. . Sixty freshly extracted human third molars were randomly divided into five groups ( = 12). In the control group, dentin was left unirradiated, whereas, in the other four groups, dentin was irradiated with Er:YAG laser in noncontact mode (MSP mode = 100 s; 10 Hz; beam diameter: 1.3 mm; speed of 1 mm/second; air 6 mL/min; and water 4 mL/min), and respectively, with the following level of energy (50 mJ, 60 mJ, 80 mJ, and 100 mJ). Then, self-adhering flowable resin composite was bonded to all prepared dentin surfaces. Shear bond strength (SBS) was applied and fractured surfaces were examined using scanning electron microscopy. . SBS values showed significant differences in 60 mJ ( < 0.05) compared to other groups. Morphological evaluation revealed tags or plugs in dentinal tubules, especially when 60 mJ and 80 mJ were used. All four groups tended to leave more residues on the dentin surface, than the control group. . Er:YAG dentin irradiation may enhance SBS of the self-adhering flowable resin composite when it is used at the appropriate low level of energy density.
为研究自粘接可流动树脂复合材料在不同能量密度下经铒激光辐射后与牙本质的剪切粘结强度。60颗新鲜拔除的人类第三磨牙随机分为五组(每组n = 12)。对照组牙本质不进行照射,而在其他四组中,牙本质采用非接触模式的铒激光照射(MSP模式 = 100 s;10 Hz;光束直径:1.3 mm;速度1 mm/秒;空气6 mL/分钟;水4 mL/分钟),能量水平分别为50 mJ、60 mJ、80 mJ和100 mJ。然后,将自粘接可流动树脂复合材料粘结到所有制备好的牙本质表面。施加剪切粘结强度(SBS)并使用扫描电子显微镜检查断裂表面。与其他组相比,60 mJ组的SBS值有显著差异(P < 0.05)。形态学评估显示牙本质小管中有标签或塞子,尤其是使用60 mJ和80 mJ时。所有四组在牙本质表面留下的残留物都比对照组多。当在适当的低能量密度水平使用时,铒激光照射牙本质可能会提高自粘接可流动树脂复合材料的SBS。