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Effect of Er:YAG laser enamel conditioning and moisture on the microleakage of a hydrophilic sealant

机译:ER:YAG激光搪瓷调节和水分对亲水密封剂的微漏

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For a given sealant, successful pit and fissure sealing is principally governed by the enamel conditioning technique and the presence of moisture contamination. A new generation of hydrophilic resin sealants is reported to tolerate moisture. This study investigates the impact of Er:YAG laser pre-conditioning and moisture contamination on the microleakage of a recent hydrophilic sealant. Occlusal surfaces of extracted human molars were either acid etched (n = 30), or successively lased and acid etched (n = 30). Ten teeth from each group were either air-dried, water-contaminated, or saliva-contaminated prior to sealing with UltraSeal XTA (R) hydro (TM). Samples were inspected for penetration of fuchsin dye following 3000 thermocycles between 5 and 50 A degrees C, and the enamel-sealant interfaces were observed by scanning electron microscopy (SEM). Significant differences in microleakage were evaluated using the Mann-Whitney U test with Bonferroni adjustment (p = 0.05). Laser pre-conditioning significantly reduced dye penetration irrespective of whether the enamel surface was moist or dry. Microleakage of water-contaminated acid etched teeth was significantly greater than that of their air-dried or saliva-contaminated counterparts. SEM analysis demonstrated good adaptation in all groups with the exception of water-contaminated acid etched teeth which exhibited relatively wide gaps. In conclusion, this hydrophilic sealant tolerates the presence of saliva, although water was found to impair its sealing ability. Laser pre-conditioning significantly decreases microleakage in all cases.
机译:对于给定的密封剂,成功的坑和裂缝密封主要由牙釉质调理技术和水分污染的存在。据报道,新一代亲水性树脂密封剂耐受水分。本研究研究了ER的影响:YAG激光预调节和水分污染在最近的亲水性密封剂的微漏。提取的人臼齿的咬合表面是酸蚀刻(n = 30),或连续激光和蚀刻(n = 30)。每组的十颗牙齿在用超氧化XTA(R)Hydro(TM)密封之前,每组从每组污染或唾液污染。检查样品以在3000℃的3000℃下进行3000℃,通过扫描电子显微镜(SEM)观察牙釉质密封剂界面。使用Bonferroni调节的Mann-Whitney U测试评估微额外额外差异(P = 0.05)。激光预调节显着降低染料渗透性,无论牙釉质表面是否湿润或干燥。水污染的酸蚀刻牙齿的微渗透明显大于它们的风干或唾液污染的对应物。 SEM分析在所有基团中表现出良好的适应,除了水污染的酸蚀刻牙齿,表现出相对宽的间隙。总之,这种亲水性密封剂耐受唾液的存在,尽管发现水损害其密封能力。激光预调节在所有情况下显着降低微渗透。

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