首页> 外文会议>Lasers in Dentistry XI; Progress in Biomedical Optics and Imaging; vol.6 no.2 >Calculation of optical properties of dental composites as a basis for determining color impression and penetration depth of laser light
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Calculation of optical properties of dental composites as a basis for determining color impression and penetration depth of laser light

机译:计算牙科复合材料的光学性能,作为确定激光的颜色印象和穿透深度的基础

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摘要

In order to achieve esthetic dental restorations, there should be no visible difference between restorative material and treated teeth. This requires a match of the optical properties of both restorative material and natural teeth. These optical properties are determined by absorption and scattering of light emerging not only on the surface but also inside the material. Investigating different dental composites in several shades, a method has been developed to calculate the optical parameters absorption coefficient μ_a, scattering coefficient μ_s, anisotropy factor g and reduced scattering coefficient μ_s′. The method includes sample preparation and measurements of transmittance and reflectance in an integrating sphere spectrometer, followed by inverse Monte Carlo simulations. Determination of optical properties is more precise and comprehensive than with the previously used Kubelka Munk theory because scattering can be looked at separated into pure scattering with the scattering coefficient μ_s and its direction with the anisotropy factor g. Moreover the use of the inverse Monte Carlo simulation not only minimizes systematic errors and considers the scattering phase function, but also takes into account the measuring geometry. The compilation of a data pool of optical parameters now enables the application of further calculation models as a basis for optimization of the composition of new materials. For example, a prediction of the general color impression for multiple layers can be carried out as well as the calculation of the wavelength dependent penetration depths of light with regard to photo polymerization. Further applications are possible in the area of laser ablation.
机译:为了实现美观的牙齿修复,修复材料和经过处理的牙齿之间应该没有明显的区别。这需要使修复材料和天然牙齿的光学特性相匹配。这些光学特性由不仅在表面而且在材料内部出现的光的吸收和散射决定。研究了几种不同的牙科复合材料,已开发出一种方法来计算光学参数吸收系数μ_a,散射系数μ_s,各向异性系数g和降低的散射系数μ_s'。该方法包括样品制备以及在积分球光谱仪中测量透射率和反射率,然后进行反向蒙特卡洛模拟。光学特性的确定比以前使用的Kubelka Munk理论更精确,更全面,因为可以将散射视为分离为具有散射系数μs的纯散射,以及具有各向异性因子g的方向。此外,使用逆蒙特卡罗模拟不仅可以最大程度地减少系统误差并考虑散射相位函数,还可以考虑测量几何形状。现在,光学参数数据库的汇编使进一步计算模型的应用成为优化新材料成分的基础。例如,可以进行多层的一般颜色印象的预测以及关于光聚合的光的波长相关的穿透深度的计算。在激光烧蚀领域中的进一步应用是可能的。

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