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首页> 外文期刊>Photomedicine and laser surgery >Effects of Nd:YAG laser on enamel microhardness and dental plaque composition: an in situ study.
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Effects of Nd:YAG laser on enamel microhardness and dental plaque composition: an in situ study.

机译:Nd:YAG激光对牙釉质显微硬度和牙菌斑组成的影响:原位研究。

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OBJECTIVE: This study evaluated Knoop microhardness (KHN) and dental plaque composition of human enamel irradiated with Nd:YAG laser and subjected to in situ cariogenic challenge. BACKGROUND DATA: Although in vitro studies have shown that Nd:YAG laser irradiation results in a reduction of enamel mineral loss after acid challenge, this hypothesis has not been tested using an in situ caries model. METHODS: Acrylic devices containing lased and non-lased human enamel slabs were used for 28 days by eight subjects highly colonized by S. mutans. Devices were immersed in a sucrose solution (20%) eight times daily in order to better simulate the cariogenic challenge. RESULTS: After the experimental period, no differences in dental plaque composition were observed between lased and non-lased enamel slabs indicating that all slabs were exposed to equivalent cariogenic challenges. Cross sections of enamel slabs were then measured for Knoop microhardness at 10, 20, 40, 60, 80, 120, and 180 microm in depth from the outer exposed surface. Un-lased enamel slabs not subjected to the in situ cariogenic challenge were also used as control. Enamel slabs from the two in situ groups exhibited lower hardness when compared to control. Lased enamel showed higher hardness values up to 60 microm in depth than the un-lased enamel exposed to in situ cariogenic challenge. CONCLUSION: The results suggest that the irradiation of Nd:YAG laser of human enamel appears to be effective for increasing enamel hardness and thus decreasing the effect of acid attack.
机译:目的:本研究评估了用Nd:YAG激光辐照并遭受原位致癌作用的人类牙釉质的努氏硬度(KHN)和牙菌斑成分。背景资料:尽管体外研究表明,Nd:YAG激光照射可减少酸激发后牙釉质矿物质的流失,但尚未使用原位龋齿模型对该假设进行检验。方法:由激光和非激光人类牙釉质平板制成的丙烯酸装置被变形链球菌高度定居的八名受试者使用了28天。每天将设备浸入蔗糖溶液(20%)中八次,以更好地模拟致癌作用。结果:在实验期之后,激光和非激光搪瓷板之间的牙菌斑组成均未观察到差异,这表明所有平板都受到同等的致癌作用。然后在距外暴露表面深度为10、20、40、60、80、120和180微米的地方测量搪瓷平板的努氏显微硬度。未经过原位生龋的未搪瓷釉料板也用作对照。与对照组相比,来自两个原位组的搪瓷板显示出较低的硬度。激光搪瓷比未激光搪瓷暴露于原位致龋性挑战时显示出更高的硬度值,深度可达60微米。结论:结果表明,Nd:YAG激光对人牙釉质的照射似乎可以有效提高牙釉质的硬度,从而降低酸蚀的影响。

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