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Practical Assessment of Mathematical Methods for Treatment of Tooth Cavities Using Laser Based Approach

机译:基于激光的方法治疗牙齿蛀牙的数学方法的实践评估

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In dental treatment, we need modern diagnostic methods to accurately detect the cavities in the teeth. The optical-based methods like laser therapy appear nowadays as conventional approaches with a widespread use. Lasers have negligible danger of harming the pulp and soft textures comparing to rotative tools. The mechanism of removal is electrostatic so the laser is only absorbed in a small mass of tissue; therefore, first electrons and after that, ions are removed quickly. This, reduces the heat directed to the surrounding materials. However, by development of laser methods, a new hope is rising to manufacture efficient and useful equipment in the near future. In this paper, an overview of different traits of four laser methods is presented and compared. Finally, Hermit-Gaussian laser mode, Fraunhofer equation, absorbed dose of laser radiation on the occlusal surface and heat conduction toward the crown are simulated. Foresaid statements are significant, due to their impact on more precise, less destructive outcomes and progress in dentistry laser methods, are the absolute aim of the paper.
机译:在牙科治疗中,我们需要现代的诊断方法来准确检测牙齿中的蛀牙。如今,基于光学的方法(如激光疗法)作为具有广泛用途的常规方法出现。与旋转工具相比,激光在损害果肉和柔软质地方面的危险可忽略不计。去除的机理是静电的,因此激光仅被吸收在很小的组织中。因此,第一个电子及其后的离子被迅速去除。这减少了传导到周围材料的热量。但是,随着激光方法的发展,在不久的将来制造高效和有用的设备的新希望就上升了。本文概述并比较了四种激光方法的不同特性。最后,模拟了Hermit-Gaussian激光模式,Fraunhofer方程,在咬合面上的激光辐射吸收剂量以及对牙冠的热传导。前瞻性陈述具有重要意义,因为它们对更精确,破坏性较小的结果以及牙科激光方法的进展具有影响,是本文的绝对目标。

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