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Polarization Resolved Near-IR Imaging of Sound and Carious Dental Enamel

机译:声音和龋齿牙釉质的偏振分辨近红外成像

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A thorough understanding of how polarized near-IR light is reflected from and transmitted through sound and carious dental hard tissues is important for the development of optical imaging devices. New optical imaging tools employing non-ionizing radiation are needed for the detection and assessment of dental caries. 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 is reflected from the occlusal surface or transmitted through thin sections of extracted human whole teeth. Previous near-IR imaging studies suggest that polarization imaging can be exploited to obtain higher contrast images of early dental caries due to the rapid depolarization of incident polarized light by the highly scattering areas of decay. In this study, the reflectance from tooth occlusal surfaces with demineralization and transmitted light through tooth thin sections with caries lesions were investigated. Major differences in the Mueller matrix elements were observed in both sound and demineralized enamel. This study suggests that polarization resolved optical imaging could be exploited to obtain higher contrast images of dental decay.
机译:彻底理解偏振的近红外光如何从声音和龋齿的牙齿硬组织反射并通过其传播,对于光学成像设备的开发很重要。需要新的使用非电离辐射的光学成像工具来检测和评估龋齿。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,当偏振近红外光从咬合面反射或透射出提取出的人类整颗牙齿的薄部分时,可获得36张图像。以前的近红外成像研究表明,由于入射的偏振光由于衰变的高度散射区域而快速消偏振,因此可以利用偏振成像来获得早期龋齿的更高对比度的图像。在这项研究中,研究了脱矿物质在牙齿咬合面的反射率以及透过龋齿病变的牙齿薄片的透射光。在健全和脱矿的搪瓷中均观察到Mueller基质元素的主要差异。这项研究表明,可以利用偏振分辨光学成像技术来获得龋齿的更高对比度图像。

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