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Assessment of radicular dentin permeability after irradiation with CO2 laser and endodontic irrigation treatments with thermal imaging

机译:评估CO2激光照射和热成像后牙髓冲洗治疗后放射状牙本质渗透性

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摘要

Previous studies have demonstrated that the permeability changes due to the surface modification of dentin can be quantified via thermal imaging during dehydration. The CO2 laser has been shown to remove the smear layer and disinfect root canals. Moreover, thermal modification via CO2 laser irradiation can be used to convert dentin into a highly mineralized enamel-like mineral. The purpose of this study is to evaluate the radicular dentin surface modification after CO2 laser irradiation by measuring the permeability with thermal imaging. Human molar specimens (n=12) were sectioned into 4 axial walls of the pulp chamber and treated with either 10% NaClO for 1 minute, 5% EDTA for 1 minute, CO2 laser or none. The CO2 laser was operated at 9.4 μm with a pulse duration of 26 μs, pulse repetition rate of 300 Hz and a fluence of 13 J/cm2. The samples were dehydrated using an air spray for 60 seconds and imaged using a thermal camera. The resulting surface morphological changes were assessed using 3D digital microscopy. The images from digital microscopy confirmed melting of the mineral phase of dentin. The area enclosed by the time-temperature curve during dehydration, ΔQ, measured with thermal imaging increased significantly with treatments with EDTA and the CO2 laser (P<0.05). These results indicate that the surface modification due to CO2 laser treatment increases permeability of radicular dentin.
机译:先前的研究表明,由于牙本质表面改性而引起的渗透性变化可通过脱水过程中的热成像进行定量。事实证明,CO2激光可以去除污迹层并为根管消毒。此外,可以使用通过CO2激光照射进行的热改性将牙本质转化为高度矿化的牙釉质样矿物质。这项研究的目的是通过用热成像测量渗透率来评估CO2激光照射后放射状牙本质的表面改性。将人体磨牙标本(n = 12)切成果肉室的4个轴向壁,并用10%NaClO处理1分钟,5%EDTA处理1分钟,CO2激光处理或不处理。 CO2激光器的工作波长为9.4μm,脉冲持续时间为26μs,脉冲重复频率为300 Hz,通量为13 J / cm 2 。使用空气喷雾将样品脱水60秒,然后使用热像仪成像。使用3D数字显微镜评估所得的表面形态变化。来自数字显微镜的图像证实了牙本质矿相的熔化。用EDTA和CO2激光处理时,通过热成像测得的脱水过程中时间-温度曲线所包围的面积ΔQ显着增加(P <0.05)。这些结果表明,由于CO 2激光处理引起的表面改性增加了放射状牙本质的渗透性。

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