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The Effects of Lasers and Fluoride on the Acid Resistance of Decalcified Human Enamel

机译:激光和氟化物对脱钙人牙釉质耐酸性的影响

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摘要

Objective: In order to preserve the maximum amount of healthy enamel and increase the acid resistance of decalcified enamel, a CO2 laser, an Nd:YAG laser, and acidulated phosphate fluoride (APF) were used to treat incipient carious lesions, then their effects were compared. Materials and Methods: One hundred and sixty samples of human caries-free premolars were immersed in pH-cycling solution (pH=5) for 2d for decalcified lesion formation. Then the tooth samples were randomly divided into eight groups and the lesions were treated using the different modalities: a control group, an APF only group, an APF=Nd:YAG laser group, and APF=CO2 laser group, an Nd:YAG laser=APF group, a CO2 laser=APF group, a CO2 laser only group, and an Nd:YAG laser only group. The energy density setting for the two types of lasers was 83.33 J/cm2. After treatment the tooth samples were immersed in pH-cycling solution again for 2d for acid challenge. As for the acid-resistance evaluation, the calcium concentration dissolved from the enamel surface was analyzed by an electrolyte analyzer. Scanning electron microscopy (SEM) was used to assess morphologic changes and polarized light microscopy (PLM) was used to evaluate optical changes in the lesions. Results: The control group showed a statistically significantly (p<0.05) higher calcium concentration compared with all the other groups. The APF group also had a statistically significantly higher calcium concentration (p0.05). Upon SEM analysis, melted surfaces and crater-like holes 1–20μm in diameter were found in the CO2 laser and Nd:YAG laser groups. On PLM, positive birefringence and reversal of birefringence after acid challenge of the lased enamel were seen. Conclusions: Using lasers and fluoride on decalcified enamel appears to increase the enamel's acid resistance, and the effects of the lasers were better than those of fluoride treatment.
机译:目的:为了最大程度地保留健康的牙釉质并提高脱钙牙釉质的耐酸性,使用CO 2 激光,Nd:YAG激光和酸化氟化物(APF)治疗对初期龋齿病变进行了比较。材料与方法:将160例无龋的人类前磨牙样品浸入pH循环溶液(pH = 5)中2天,以形成脱钙的病变。然后将牙齿样本随机分为八组,并使用不同的方式对病变进行处理:对照组,仅APF组,APF = Nd:YAG激光组和APF = CO 2 激光组,Nd:YAG激光= APF组,CO 2 激光= APF组,仅CO 2 激光组和仅Nd:YAG激光组。两种激光器的能量密度设置为83.33 J / cm 2 。处理后,将牙齿样品再次浸入pH循环溶液中2天以进行酸刺激。关于耐酸性评价,通过电解质分析仪分析从釉质表面溶解的钙浓度。扫描电子显微镜(SEM)用于评估形态学变化,偏振光显微镜(PLM)用于评估病变的光学变化。结果:与所有其他组相比,对照组的钙浓度具有统计学显着性(p <0.05)。 APF组的钙浓度在统计学上也显着较高(p0.05)。通过SEM分析,在CO 2 激光器和Nd:YAG激光器组中发现了熔化的表面和直径为1-20μm的弹坑状孔。在PLM上,观察到激光对珐琅质进行酸激发后,正双折射和双折射反转。结论:在氟化钙脱钙的瓷釉上使用激光和氟化物似乎可以提高瓷釉的耐酸性,并且激光的效果要好于氟化物的处理。

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  • 来源
    《Photomedicine and Laser Surgery》 |2009年第3期|447-452|共6页
  • 作者

    Chun-Chih Chen; Shun-Te Huang;

  • 作者单位

    Graduate Institute of Dental Sciences, Kaohsiung Medical University, Kaohsiung City, Taiwan.;

    Faculty of Dental Hygiene, College of Dental Medicine, Kaohsiung Medical University, Kaohsiung City, Taiwan.;

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