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Dentin mid-infrared laser ablation at various lasing parameters

机译:各种激光参数下的牙本质中红外激光烧蚀

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In this study a frustrated total internal reflection (FTIR) Q-switched and free-running Er:YAG laser, as well as a novel design transversally excited atmospheric pressure (TEA) oscillator-double amplifier corona preionised high beam quality Hydrogen-Fluoride (HF) laser system, all developed in our lab, were used in dentin ablation experiments. In the case of the Er:YAG laser, pulses of 190 ns in Q-switched operation and of 80 μs pulse width in free-running operation at 2.94 μm were used, while HF laser pulses of 39 ns in the wavelength range of 2.6-3.1 μm in a predominantly TEM_(00) beam were also used to interact in vitro with dentin tissue. Several samples of freshly extracted human teeth were used, cut longitudinally in facets of 0.4-1.5 mm thick. Ablation experiments were conducted with the laser beam directly focused on the tissue or after being waveguided through suitable mid-IR fiber/waveguide alternatively ended with quartz end-sealing caps. The correlation between the various laser beam parameters, as wavelength, pulse duration, repetition rate, energy and spatial distribution of the beam profile and the ablative characteristics (ablation rates, tissue surface morphology) of dentin surface were investigated.
机译:在这项研究中,受挫的全内反射(FTIR)调Q和自由运行的Er:YAG激光器,以及新型设计的横向激发大气压(TEA)振荡器-双放大器电晕预离子化的高束质量氢氟化物(HF) )激光系统,都是我们实验室开发的,用于牙本质消融实验。对于Er:YAG激光器,在Q开关操作中使用190 ns的脉冲,在空转操作中使用2.94μm的脉冲宽度为80μs的脉冲,而在2.6-nm波长范围内使用39 ns的HF激光脉冲在主要是TEM_(00)光束中的3.1μm也用于体外与牙本质组织相互作用。使用了一些新鲜提取的人牙样本,将其纵向切成0.4-1.5毫米厚的刻面。进行消融实验时,激光束直接聚焦在组织上,或者在通过合适的中红外光纤/波导波导之后,或者以石英封端结束。研究了各种激光束参数之间的相关性,例如波长,脉冲持续时间,重复率,光束轮廓的能量和空间分布以及牙本质表面的烧蚀特性(烧蚀率,组织表面形态)。

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