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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Mechanism of dye-enhanced pulsed laser ablation of hard tissues: implications for dentistry
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Mechanism of dye-enhanced pulsed laser ablation of hard tissues: implications for dentistry

机译:硬组织染料增强脉冲激光烧蚀的机理:对牙科的影响

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Alexandrite laser ablation of enamel enhanced by an indocyanine green dye was studied. A microjet system was employed to deliver precisely measured small amounts of absorbing dye solution to the site of irradiation. A sequence of physical phenomena involved in dye-enhanced laser ablation of dental enamel was revealed when laser pulse profiles were compared with the profiles of laser-induced pressure, laser-induced plasma, and ablation plume kinetics. To understand photomechanical effects on the enamel ablation, the absolute values of pressure waves were measured by a calibrated wide-band acoustic transducer. Absolute amplitude and temporal profile of pressure waves, plasma emission, ablation plume kinetics, ablation efficiency, and crater quality under free-running and and Q-switched ablation of enamel were studied. It was found that there is an optimal dye solution volume (100-200 nL) when the maximum ablation efficiency (30 /spl mu/m/pulse) can be obtained. It was shown that the ablation efficiency under Q-switched laser irradiation is approximately one order of magnitude lower than that under free-running ablation. It was shown that Q-switched enamel ablation with dye solution is caused by the powerful recoil pressure wave with an amplitude 3-6.5 kbar. In contrast, dye-enhanced free-running enamel ablation is caused by plasma-mediated evaporation of enamel and accompanied by recoil pressure waves of lower amplitude (0.5-1 kbar) that is below mechanical damage threshold in enamel. Uneven crater walls after Q-switched ablation were observed by scanning electron microscopy (SEM). Free-running ablation makes precise craters with smooth and even crater walls.
机译:研究了由吲哚菁绿色染料增强的搪瓷的亚历山大石激光烧蚀。使用微喷射系统将精确测量的少量吸收染料溶液输送到照射位置。当将激光脉冲轮廓与激光感应压力,激光感应等离子体和烧蚀羽流动力学的轮廓进行比较时,发现了一系列与牙科瓷釉的染料增强激光烧蚀有关的物理现象。为了了解对釉质消融的光机械效应,通过校准的宽带声换能器测量压力波的绝对值。研究了搪瓷的自由运行和Q开关烧蚀下压力波的绝对振幅和时间分布,等离子体发射,烧蚀羽流动力学,烧蚀效率和弹坑质量。已经发现,当可以获得最大消融效率(30 / spl mu / m / pulse)时,存在最佳的染料溶液体积(100-200 nL)。结果表明,调频激光照射下的烧蚀效率比自由运行烧蚀下的烧蚀效率低约一个数量级。结果表明,染料溶液调Q搪瓷消融是由振幅为3-6.5 kbar的强大反冲压力波引起的。相反,染料增强的自由流动搪瓷消融是由等离子体介导的搪瓷蒸发引起的,并伴有低于搪瓷机械损伤阈值的较低幅度(0.5-1 kbar)的反冲压力波。通过扫描电子显微镜(SEM)观察到调Q烧蚀后的坑壁不均匀。自由运行的烧蚀使精确的坑口具有光滑且均匀的坑口壁。

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