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The variation in surface morphology and hardness of human deciduous teeth samples after laser irradiation

机译:激光照射后,人落叶牙齿样品表面形态和硬度的变化

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The variation in surface morphology and hardness of human deciduous teeth samples has been investigated after laser irradiation at different wavelengths and energies. Nd:YAG was employed as a source of irradiation for IR (1064 nm) and visible (532 nm) radiation, whereas an excimer laser was used as the source of UV (248 nm) radiation. Scanning electron microscope (SEM) analysis was carried out to reveal the surface morphological evolution of teeth samples. Vickers microhardness tester was employed to investigate the modifications in the hardness of the laser-treated samples. It is observed from SEM analysis that IR wavelength is responsible for ablation of collagen matrix and intertubular dentine. For visible radiation, the ablation of collagen along with hydroxypatite is observed. With UV radiation, the ablation of peritubular dentine is dominant and is responsible for the sealing of tubules. The decrease in hardness at lower energy for both wavelengths is due to the evaporation of carbon content. With increasing energy, evaporation of water along with carbon content, and resolidification and re-organization of inorganic content causes the increase in hardness of the treated dentine. SEM as well as microhardness analyses reveal that laser wavelengths and energy of laser radiation significantly influence the surface morphology and hardness of samples.
机译:在不同波长和能量的激光照射之后研究了人落牙样品的表面形态和硬度的变化。 ND:YAG作为IR(1064nm)和可见(532nm)辐射照射的源,而准分子激光用作UV(248nm)辐射的源。进行扫描电子显微镜(SEM)分析,以揭示牙齿样品的表面形态学。 Vickers显微硬度测试仪研究了激光处理样品硬度的修饰。从SEM分析中观察到IR波长负责胶原蛋白基质和牙颌牙本质的消融。对于可见辐射,观察到胶原蛋白与羟基肽的消融。通过紫外线辐射,梗死牙本质的消融是显性的,并且负责小管的密封。对于两个波长的较低能量的硬度降低是由于碳含量的蒸发。随着能量的增加,水的蒸发以及碳含量,和重组和无机含量的重新组织导致治疗牙本质的硬度增加。 SEM以及显微硬度分析揭示了激光波长和激光辐射的能量显着影响样品的表面形态和硬度。

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