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MODELLING OF THE HUMAN ENAMEL LASER ABLATION PROCESS AT THE MESOSCOPIC SCALE

机译:人体搪瓷激光烧蚀过程的建模在介面阶段规模

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A mesoscopic simulation of the process of human enamel laser ablation by Er:YAG and CO_2 lasers is being developed using the finite element method, taking into account the complex structure and chemical composition of this material. A geometric model that allows studying in detail the temperature, stress and displacement distribution within a few enamel rods is presented. The heat generation that takes place inside the enamel at the centre of the laser spot, caused by a non-ablative laser pulse emitted by CO_2 and Er.YAG lasers, was simulated. The sensitivity of our model to the estimated material parameters was studied. Temperature, displacement and stress distribution maps obtained for both lasers are presented. These preliminary results suggest that the temperature distribution across the enamel rods is different in the two situations considered; thermally induced stresses in the material are higher in the regions that are richer in hydroxyapatite (HA), and the higher displacements are observed in the regions that are rich in water. The rod tails inside enamel present higher stresses in the direction perpendicular to the surface of enamel than the ones that are created at the surface of our simulated structure. We conclude that the mesostructure plays a crucial role in the accurate modelling of dental laser ablation.
机译:通过ER:YAG和CO_2激光器的人牙釉质激光烧蚀过程的介观模拟是使用有限元方法开发的,考虑到这种材料的复杂结构和化学成分。允许详细研究几何模型,详细研究几个釉质棒内的温度,应力和位移分布。模拟由CO_2和ER.YAG激光器发出的非烧蚀激光脉冲引起的激光斑点的牙釉质内部发生的发热。研究了我们模型对估计材料参数的敏感性。提出了对两个激光器获得的温度,位移和应力分布图。这些初步结果表明,搪瓷棒的温度分布在考虑的两个情况下是不同的;在羟基磷灰石(HA)中更丰富的区域中,材料中的热诱导应力较高,并且在富含水的区域中观察到更高的位移。牙釉质内的杆尾部在垂直于牙釉质表面的方向上呈现较高的应力,而不是在我们的模拟结构的表面上产生的方向。我们得出结论,介思结构在牙科激光烧蚀的准确建模中起着至关重要的作用。

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