首页> 美国卫生研究院文献>Journal of Lasers in Medical Sciences >Structural and Morphological Changes in Human Dentin after Ablative and Subablative Er:YAG Laser Irradiation
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Structural and Morphological Changes in Human Dentin after Ablative and Subablative Er:YAG Laser Irradiation

机译:消融和亚消融Er:YAG激光照射后人牙本质的结构和形态变化

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摘要

>Introduction: This study investigated the influence of Erbium-Doped Yttrium Aluminum Garnet (Er:YAG) laser on microhardness, chemical composition and subsurface morphology of dentin cavity walls. >Methods: Forty sound human premolars were selected and randomly assigned into four groups. Class V cavities were prepared either with an Er:YAG laser (groups 1 and 2; 15 Hz, 250 mJ for enamel, 10 Hz, 200 mJ for dentin) or with a high speed handpiece (groups 3 and 4). The specimens in groups 1 and 3 served as the control, whereas those in groups 2 and 4 were exposed to subablative laser irradiation following cavity preparation (10 Hz, 50 mJ). After bisecting the specimens, one half was subjected to microhardness assessment and the other half was evaluated by SEM-EDS analysis. >Results: Microhardness was significantly greater in the specimens prepared by both ablative and subablative laser irradiation (group 2) than that of the bur-prepared cavities (groups 3 and 4) (P < 0.05). The quantity of calcium ion was significantly greater in cavities prepared by the Er:YAG laser (groups 1 and 2) compared to that of the bur cavities (groups 3 and 4) (P < 0.05). Subablative irradiation improved microhardness and weight percentage of calcium ion in both laser and bur cavities, but the difference was not significant compared to that of the relevant control group (P > 0.05). >Conclusion: Cavity preparation with an Er:YAG laser could be considered as an alternative to the conventional method of drilling, as it enhances the mechanical and compositional properties of lased dentin, especially when combined by subablative irradiation.
机译:>简介:本研究调查了掺b钇铝石榴石(Er:YAG)激光对牙本质腔壁的显微硬度,化学成分和表面形态的影响。 >方法:选择四十个健全的人类前磨牙,并将其随机分为四组。使用Er:YAG激光(第1组和第2组; 15 Hz,搪瓷250 mJ,牙本质用10 Hz,200 mJ)或高速机头(第3组和第4组)制备V级腔。第1组和第3组的标本用作对照,而第2组和第4组的标本在腔准备(10 Hz,50 mJ)后暴露于亚烧蚀激光辐照下。将试样平分后,对一半进行显微硬度评估,另一半通过SEM-EDS分析进行评估。 >结果:用烧蚀和亚烧蚀激光照射(第2组)制备的样品的显微硬度显着高于用bur制造的腔(第3和第4组)(P <0.05)。与bur腔(3和4组)相比,Er:YAG激光制备的腔(第1和2组)中钙离子的量显着更大(P <0.05)。亚烧蚀辐照改善了激光和颅腔内钙离子的显微硬度和重量百分比,但与相关对照组相比差异不显着(P> 0.05)。 >结论:可以考虑用Er:YAG激光进行腔体准备,而不是传统的钻孔方法,因为它增强了激光牙本质的机械和成分特性,尤其是在通过消融照射进行结合时。

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