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Photothermal Detection of Incipient Dental Caries: Experiment and Modeling

机译:初期龋齿的光热检测:实验和建模

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摘要

Laser induced photothermal radiometry (PTR) was applied as a safe, non-destructive, and highly sensitive tool for the detection of early tooth surface demineralization. In the experiments, teeth were treated sequentially with an artificial demineralization gel to simulate controlled mineral loss on the enamel surface. Modulated laser light generated infrared blackbody radiation from teeth upon absorption and nonradiative energy conversion. The infrared flux emitted by the treated region of the tooth surface and sub-surface was monitored with an infrared detector twice: before and after treatment. The experiments showed very high sensitivity of the measured signal to incipient changes in the enamel structure, emphasizing the clinical capabilities of the method. In order to analyze the biothermophotonic phenomena in a sample during the photothermal excitation, a theoretical model featuring coupled diffuse-photon-density-wave and thermal-wave fields was developed. The theoretical fits based on the three-layer approach (demineralizad enamel + healthy enamel + dentin) allowed fitting thermal and optical properties of the demineralized layer. The theoretical analysis showed that the dentin layer should be taken into account in the fittings.
机译:激光诱导光热辐射法(PTR)作为一种安全,无损且高度灵​​敏的工具,可用于早期牙齿表面脱矿质的检测。在实验中,牙齿依次用人工脱矿质凝胶处理,以模拟釉质表面矿物质流失的情况。调制激光在吸收和非辐射能量转换后从牙齿产生红外黑体辐射。由牙齿表面和亚表面的处理区域发出的红外通量用红外检测器进行两次监测:治疗前后。实验表明,所测信号对牙釉质结构的初期变化具有很高的敏感性,从而强调了该方法的临床能力。为了分析光热激发过程中样品的生物热光子现象,建立了一个以扩散光子-密度波和热波场为耦合的理论模型。基于三层方法(脱矿质搪瓷+健康搪瓷+牙本质)的理论拟合可实现脱矿层的热学性质和光学性质。理论分析表明,在安装时应考虑牙本质层。

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