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Thermophotonic lock-in imaging: A novel early caries detection and imaging modality

机译:热光子锁定成像:一种新颖的早期龋齿检测和成像方式

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摘要

Using photothermal wave principles and as an extension to the frequency-domain photothermal radiometry, a novel dental imaging modality, thermophotonic lock-in imaging (TPLI), is introduced. In order to assess the capabilities of the proposed methodology samples with natural and artificially-generated caries were examined and the results were compared with the destructive transverse microradiography density profiles. It was found that the increased light scattering and absorption within early carious lesions increases the thermal-wave amplitude and shifts the thermal-wave centroid, producing contrast between the carious lesion and the intact enamel in both amplitude and phase images. Phase images are emissivity normalized and therefore insensitive to the presence of stain. Amplitude images provide integrated information from deeper enamel regions. It was concluded that the results of our non-invasive, non-contacting imaging methodology exhibit significantly higher sensitivity to very early demineralization than dental radiographs and are in agreement with the destructive transverse microradiography mineral density profiles.
机译:利用光热波原理并将其作为频域光热辐射法的扩展,介绍了一种新颖的牙科成像方式,即热光子锁定成像(TPLI)。为了评估所提出的方法的能力,检查了具有天然和人工产生的龋齿的样品,并将结果与​​破坏性的横向显微放射线密度图进行了比较。发现早期龋齿病变内光散射和吸收的增加增加了热波振幅并移动了热波质心,从而在振幅和相位图像中都在龋齿病变和完整的牙釉质之间产生了对比度。相位图像的发射率已归一化,因此对污点的存在不敏感。振幅图像提供了来自更深釉质区域的综合信息。结论是,我们的非侵入性,非接触式成像方法的结果显示,与牙科X射线照片相比,其对非常早期的脱矿物质的敏感性显着更高,并且与破坏性的横向显微X射线照相的矿物密度分布相吻合。

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