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Synergistic effect of fluoride and laser irradiation for the inhibition of the demineralization of dental enamel

机译:氟化物和激光照射对牙釉质脱矿的协同作用

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Both laser irradiation and fluoride treatment alone are known to provide increased resistance to acid dissolution. CO_2 lasers tuned to a wavelength of 9.3 μm can be used to efficiently convert the carbonated hydroxyapatite of enamel to a much more acid resistant purer phase hydroxyapatite (HAP). Further studies have shown that fluoride application to HAP yields fluoroapatite (FAP) which is even more resistant against acid dissolution. Previous studies show that CO_2 lasers and fluoride treatments interact synergistically to provide significantly higher protection than either method alone, but the mechanism of interaction has not been elucidated. We recently observed the formation of microcracks or a "crazed" zone in the irradiated region that is resistant to demineralization using high-resolution microscopy. The microcracks are formed due to the slight contraction of enamel due to transformation of carbonated hydroxyapatite to the more acid resistant pure phase hydroxyapatite (HAP) that has a smaller lattice. In this study, we test the hypothesis that these small cracks will provide greater adhesion for topical fluoride for greater protection against acid demineralization.
机译:已知仅激光照射和氟化物处理,可提供对酸溶解的增加的抗性。调谐到波长9.3μm的CO_2激光可用于有效地将碳酸羟基磷灰石的碳酸羟基磷灰石有效地转化为更多样化的耐酸纯相羟基磷灰石(HAP)。进一步的研究表明,氟化物施用到Hap产生氟磷灰石(FAP),其甚至更耐酸溶解。以前的研究表明,CO_2激光和氟化物处理协同相互作用,以提供比单独的方法更高的保护,但尚未阐明相互作用的机制。我们最近观察到使用高分辨率显微镜的辐射区域中的微裂纹或“疯狂”区域的形成区域。由于碳酸化羟基磷灰石的转化为具有较小晶格的耐酸性纯相羟基磷灰石(HAP)而导​​致牙釉质的轻微收缩,形成微裂纹。在这项研究中,我们测试了这些小裂缝将提供更大的丙烃的粘附性,以便更大地保护酸性脱矿质。

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