首页> 外文期刊>Lasers in surgery and medicine >Influence of an optically thick water layer on the bond-strength of composite resin to dental enamel after IR laser ablation.
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Influence of an optically thick water layer on the bond-strength of composite resin to dental enamel after IR laser ablation.

机译:一个光学厚水层的影响键的强度复合树脂与牙釉质在红外激光消融。

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BACKGROUND AND OBJECTIVES: Several studies of hard tissue ablation with Er:YAG lasers have shown that the addition of an optically thick water layer ( approximately 1 mm) added to the surface of dental enamel before each incident laser pulse, profoundly influences the rate and efficiency of ablation and the resulting surface morphology. The objective of this study was the determination of laser parameters which result in clinically useful bond strengths without the need for phosphoric acid etching. The hypothesis to be tested was that laser irradiation through a relatively thick layer of water would result in a surface to which composite could be bonded with bond strength similar to surfaces etched with phosphoric acid. This hypothesis is predicated on the assumption that the water prevents the formation of non-apatite calcium phosphate phases on the enamel surface. MATERIALS AND METHODS: In this study, a calibrated syringe pump and a motion control system were used to uniformly treat flat enamel surfaces using free-running Er:YAG laser pulses with and without water, and 9.6 mum CO(2) laser pulses on a dry surface for comparison. The rate of water delivery that resulted in the most efficient ablation was determined by profiling the resulting laser incisions using optical coherence tomography. In addition, enamel surfaces of 5 x 5 mm(2) were uniformly treated and the resulting surface morphology was examined using synchrotron radiation-fourier transform infrared spectroscopy (SR-FTIR), and optical and electron microscopy. The influence of the modified surface morphology on the adhesion of composite resin was investigated. RESULTS: The shear-bond strength of composite bonded to enamel surfaces irradiated at intensities clinically relevant for caries removal approached values measured for conventional acid etching when the water delivery rate was optimized. CONCLUSIONS: This study demonstrates that composite restorative materials can be directly bonded to laser prepared surfaces without the necessity of further surface preparation and acid etching and that the addition of a thick water layer ( approximately 1 mm) prevents the formation of undesirable CaP phases that compromise adhesion to restorative materials. Lasers Surg. Med. 33:264-269, 2003. Copyright 2003 Wiley-Liss, Inc.
机译:背景和目的:一些研究的困难与Er组织消融:掺钕钇铝石榴石激光显示添加一个光学厚的水层(约1毫米)添加到表面牙釉质在每个事件的激光率和脉搏,深刻的影响烧蚀效率和由此产生的表面形态。确定激光参数导致的临床上有用的债券的优势而不需要磷酸腐蚀。测试是通过激光辐照相对厚层的水会导致表面复合可以保税键的强度与表面蚀刻磷酸。假设水阻止了形成non-apatite磷酸钙阶段釉质表面。这项研究中,校准注射泵和运动控制系统是用来统一治疗扁平搪瓷表面使用不同步的呃:掺钕钇铝石榴石激光脉冲和没有水,和9.6妈妈有限公司(2)激光脉冲在干燥表面比较。导致最有效的消融由分析结果激光切口使用光学相干断层扫描。另外,搪瓷表面5 x 5毫米(2)统一接受由此产生的表面形态学检查使用同步加速器radiation-fourier变换红外光谱学(SR-FTIR),光学和电子显微镜。修改后的表面形态的影响复合树脂的粘附调查。复合连着搪瓷表面辐照强度为龋齿临床相关移除接近测量值传统的供水时酸腐蚀率进行优化。表明复合修复材料可以直接连着激光表面做好准备了吗没有进一步的表面的必要性准备和酸腐蚀,添加了一层水(约1毫米)防止不良帽的形成粘附恢复性阶段妥协材料。版权2003 Wiley-Liss公司。

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