Morphological study of dentin irradiated by solid-state ultraviolet lasers: a comparison of wavelength and repetition rate.

Hank C Sciberras, Nick Boyd, Geoff T Dair
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引用次数: 2

Abstract

Objective: In this study, we examined the surface morphology of dentin after being ablated by the third, fourth, and fifth harmonics of the Nd:YAG laser. The influences of the repetition rate with respect to the wavelength were also investigated.

Background data: Typically, excimer lasers have been used as the primary sources of ultraviolet (UV) laser wavelengths to investigate laser ablation of dentin. In the past decade, developments in nonlinear optical technology have given rise to higher conversion efficiencies of the fourth and fifth harmonics of the Nd:YAG laser. To this end, sufficient energy densities of the fourth and fifth harmonics of the Nd:YAG laser have been generated to ablate dentin.

Materials and methods: Thin dentin samples (typically 1 mm) were irradiated by the third, fourth, and fifth harmonics of the Nd:YAG laser. Ablation occurred at repetition rates of 1, 5, 10, and 20 Hz, using similar energy densities for each laser wavelength. An environmental scanning electron microscope was used to assess the resultant surface morphology.

Results: Dentine surfaces after 355-nm ablation exhibited plugging at each repetition rate. Similar surfaces were exhibited after 266-nm ablation. "Plugging" over dentine tubules was less obvious after 213-nm laser ablation. The results may highlight the impact of different absorption characteristics of each wavelength.

Conclusion: Solid-state UV laser ablation of dentin exhibits similar properties to excimer laser ablation. At similar energy densities, the deeper UV laser wavelengths exhibit less "plugging" of dentin tubules, suggesting a lower thermal impact.

固体紫外激光照射牙本质的形态学研究:波长和重复率的比较。
目的:观察Nd:YAG激光三、四、五次谐波消融后牙本质的表面形态。研究了重复频率对波长的影响。背景资料:通常,准分子激光器被用作紫外激光波长的主要来源来研究牙本质的激光消融。在过去的十年中,非线性光学技术的发展提高了Nd:YAG激光器的四次和五次谐波的转换效率。为此,Nd:YAG激光产生了足够的四次和五次谐波能量密度来烧蚀牙本质。材料和方法:用Nd:YAG激光的三、四、五次谐波照射薄的牙本质样品(通常为1mm)。消融发生在1、5、10和20赫兹的重复频率下,每个激光波长使用相似的能量密度。使用环境扫描电子显微镜来评估所得表面形貌。结果:355 nm消融后牙本质表面在每个重复频率下都出现堵塞。在266 nm烧蚀后,出现了相似的表面。213 nm激光消融后,牙本质小管“堵塞”不明显。结果可能突出了不同波长吸收特性的影响。结论:固体紫外激光消融牙本质具有与准分子激光消融相似的特性。在相似的能量密度下,较深的紫外激光波长表现出较少的“堵塞”牙本质小管,表明较低的热影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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