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Near-IR Polarization Imaging of Sound and Carious Dental Enamel

机译:龋齿牙釉质的近红外偏振成像

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A thorough understanding of how polarized near-IR light propagates through sound and carious dental hard tissues is important for the development of dental optical imaging systems. New optical imaging tools for the detection and assessment of dental caries (dental decay) such as near-IR imaging and optical coherence tomography can exploit the enhanced contrast provided by polarization sensitivity. In this investigation, an automated system was developed to collect images for the full 16-element Mueller Matrix. The polarized light was controlled by linear polarizers and liquid crystal retarders and the 36 images were acquired as the polarized near-IR light propagates through the enamel of extracted human thin tooth sections. In previous work, we reported that polarized light is rapidly depolarized by demineralized enamel, and sound and demineralized dentin.1 The rapid depolarization of polarized light by dental caries in the near-IR provides high contrast for caries imaging and detection. In this initial study, major differences in the Mueller matrix elements were observed in both sound and demineralized enamel which supports this approach and warrants further investigation.
机译:全面了解偏振近红外光如何通过声音和龋齿的牙齿硬组织传播,对于牙齿光学成像系统的开发非常重要。用于检测和评估龋齿(龋齿)的新型光学成像工具,例如近红外成像和光学相干断层扫描,可以利用偏振敏感性提供的增强对比度。在这项调查中,开发了一个自动化系统来收集完整的16元素Mueller矩阵的图像。偏振光由线性偏振器和液晶延迟器控制,当偏振近红外光传播通过提取的人类细牙部分的釉质时,获得了36张图像。在先前的工作中,我们报道了偏振光被去矿质的牙釉质,声音和去矿质的牙本质快速去极化。1龋齿在近红外中对偏振光的快速去极化为龋齿成像和检测提供了高对比度。在这项初步研究中,在无声和脱矿的搪瓷中都观察到了Mueller基体元素的主要差异,这支持了这种方法,值得进一步研究。

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