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Polarized Light Propagation through Sound and Carious Enamel at 1310-nm

机译:通过1310纳米的声音和龋齿搪瓷偏振光传播

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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. Stokes polarimetry was used to monitor the state of polarization (SOP) and degree of polarization (DOP) of incident linearly and circularly polarized light as it propagates through extracted human whole teeth, thin tooth sections and single apatite crystals. These measurements at 1310-nm suggest that the DOP is maintained through sound tooth enamel and transparent dentin and that circularly polarized light is typically depolarized more rapidly than linearly light. Polarized light is rapidly depolarized by demineralized enamel and sound and demineralized dentin. The rapid depolarization of polarized light by dental caries in the near-IR provides high contrast for caries imaging and detection.
机译:彻底了解如何通过声音和龋齿牙科硬组织传播极化的近红外光线,对牙科光学成像系统的发展是重要的。用于检测和评估牙科龋(牙齿衰减)的新光学成像工具,如接近IR成像和光学相干断层扫描,可以利用极化灵敏度提供的增强的对比度。 STOKES Polarimetry用于监测入射的偏振状态(SOP)和偏振度(SOP)和偏振(DOP),当它通过提取的人的全齿,薄的齿段和单磷灰石晶体传播时呈线性和圆偏振光。在1310-nm下的这些测量表明DOP通过声牙釉质和透明牙本质保持,并且圆偏振光通常比线性光更快地去极化。通过脱矿质牙釉质和声音和脱矿质的牙本质快速去极化偏振光。近红外龋齿通过龋齿快速去极化提供高对比度龋齿成像和检测。

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