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首页> 外文期刊>Operative dentistry >Influence of Er,Cr:YSGG laser treatment on microtensile bond strength of adhesives to enamel.
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Influence of Er,Cr:YSGG laser treatment on microtensile bond strength of adhesives to enamel.

机译:Er,Cr:YSGG激光处理对胶粘剂与牙釉质的微拉伸粘合强度的影响。

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摘要

The current trend towards minimum-intervention dentistry has introduced laser technology as an alternative technique for cavity preparation. This study assessed the null hypothesis that enamel prepared either by Er,Cr:YSGG laser or conventional diamond bur is equally receptive to adhesive procedures. The buccal and lingual surfaces of 35 sound human molars were prepared with Er,Cr:YSGG laser or a medium-grit diamond bur. One etch&rinse (OptiBond FL) and three self-etch adhesives (Adper Prompt L-Pop, Clearfil SE Bond and Clearfil S3 Bond) were applied on laser-irradiated and bur-cut enamel, followed by the application of a 5-6 mm build-up of Z100. The micro-tensile bond strength (microTBS) was determined after 24 hours of storage in water at 37 degrees C. Prepared enamel surfaces and failure patterns were evaluated using a stereomicroscope and a field-emission-gun scanning electron microscope (Feg-SEM). The pTBS to laser-irradiated enamel was significantly lower than to bur-cut enamel (p<0.05), with theexception of Clearfil S3 Bond, which bonded equally effectively to both substrates. The latter presented the highest microTBS on laser-irradiated enamel, though it was not statistically different from the microTBS of OptiBond FL. SEM analysis revealed significant morphological alterations of the laser-irradiated enamel surface, such as areas of melted and recrystalized hydroxyapatite and deep extensive micro-cracks. In conclusion, the bonding effectiveness of adhesives to laser-irradiated enamel depends not only on the structural substrate alterations induced by the laser, but also on the characteristics of the adhesive employed.
机译:当前朝向最小干预牙科的趋势已经引入激光技术作为腔体制备的替代技术。这项研究评估了零假设,即用Er,Cr:YSGG激光或常规金刚石车针制备的搪瓷同样可以接受粘合程序。用Er,Cr:YSGG激光或中等粒度的金刚石钻针制备35个声音正常的臼齿的颊面和舌面。将一种蚀刻和冲洗(OptiBond FL)和三种自蚀刻胶粘剂(Adper Prompt L-Pop,Clearfil SE Bond和Clearfil S3 Bond)涂在激光辐照和bur-cut搪瓷上,然后施加5-6 mm的厚度-Z100的特写镜头。在37℃的水中储存24小时后,测定微拉伸粘合强度(microTBS)。使用立体显微镜和场发射枪扫描电子显微镜(Feg-SEM)评估制备的搪瓷表面和破坏模式。激光照射的瓷釉的pTBS显着低于bur-cut瓷釉(p <0.05),Clearfil S3键例外,后者可以有效地粘合到两个基材上。后者在激光辐照的瓷釉上显示出最高的microTBS,尽管与OptiBond FL的microTBS在统计学上没有差异。 SEM分析表明,激光辐照的瓷釉表面形态发生了显着变化,例如熔融和重结晶的羟基磷灰石区域以及深大的微裂纹。总之,粘合剂与激光辐照瓷釉的粘合效果不仅取决于激光引起的结构基材变化,还取决于所用粘合剂的特性。

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