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Er:YAG laser micro-preparation of hard dental tissue

机译:ER:YAG激光微型制剂硬牙科组织

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Free running and Q-switch infrared Er:YAG laser radiations were compared in the case of hard tissue preparation. The interaction energy of 40 mJ in pulse 200 us long yielding to the interaction intensity 62 kW/cm2, and the energy of 20 mJ in 100 ns long pulse yielding to the interaction intensity 62 MW/cm2 was used for the case of free running, and Q-switch regime, respectively. For the radiation delivery, waveguide transfer system was used. It consisted of input lens (40 mm focal length), a cyclic olefin polymer coated silver hollow glass waveguide (700/850 um diameter), and output lens (55 um focal length). For the interaction experiment the samples of the extracted human teeth cut into longitudinal sections and polished were used. The thickness of the prepared samples ranged from 5 to 7 mm. The methods were compared from the point of prepared cavity shape (SEM), inner surface, and possibility of selective removal of carries. The composite filling material was used to reconstruct the cavities.
机译:在硬组织制备的情况下比较了自由运行和Q-Switch红外ER:YAG激光辐射。 40MJ在脉冲200 US中的相互作用能量长度屈服于相互作用强度62kW / cm2,并且在100ns长脉冲中产生20mJ的能量,从而屈服于自由运行,和Q-Switch制度分别。对于辐射递送,使用波导转移系统。它包括输入透镜(40mm焦距),环烯烃聚合物涂覆银中空玻璃波导(700/850μm直径)和输出透镜(55μm焦距)。对于相互作用实验,使用提取的人齿的样品切成纵向部分并抛光。制备的样品的厚度范围为5至7mm。将该方法与选择性去除携带的腔体形状(SEM),内表面和可能性进行比较。复合填充材料用于重建空腔。

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