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牙釉质发育缺陷的近红外成像

Near-infrared imaging of developmental defects in dental enamel.

作者信息

Hirasuna Krista, Fried Daniel, Darling Cynthia L

机构信息

University of California, San Francisco, San Francisco, California 94143-0758, USA.

出版信息

J Biomed Opt. 2008 Jul-Aug;13(4):044011. doi: 10.1117/1.2956374.

Abstract

Polarization-sensitive optical coherence tomography (PS-OCT) and near-infrared (NIR) imaging are promising new technologies under development for monitoring early carious lesions. Fluorosis is a growing problem in the United States, and the more prevalent mild fluorosis can be visually mistaken for early enamel demineralization. Unfortunately, there is little quantitative information available regarding the differences in optical properties of sound enamel, enamel developmental defects, and caries. Thirty extracted human teeth with various degrees of suspected fluorosis were imaged using PS-OCT and NIR. An InGaAs camera and a NIR diode laser were used to measure the optical attenuation through transverse tooth sections (approximately 200 microm). A digital microradiography system was used to quantify the enamel defect severity by measurement of the relative mineral loss for comparison with optical scattering measurements. Developmental defects were clearly visible in the polarization-resolved OCT images, demonstrating that PS-OCT can be used to nondestructively measure the depth and possible severity of the defects. Enamel defects on whole teeth that could be imaged with high contrast with visible light were transparent in the NIR. This study suggests that PS-OCT and NIR methods may potentially be used as tools to assess the severity and extent of enamel defects.

摘要

偏振敏感光学相干断层扫描(PS-OCT)和近红外(NIR)成像技术是正在开发的用于监测早期龋损的有前景的新技术。氟牙症在美国是一个日益严重的问题,更为常见的轻度氟牙症在视觉上可能会被误诊为早期牙釉质脱矿。遗憾的是,关于健康牙釉质、牙釉质发育缺陷和龋齿光学特性差异的定量信息很少。使用PS-OCT和NIR对30颗拔除的、具有不同程度疑似氟牙症的人类牙齿进行成像。使用铟镓砷相机和近红外二极管激光器测量穿过牙齿横断面(约200微米)的光学衰减。使用数字显微放射成像系统通过测量相对矿物质损失来量化牙釉质缺陷的严重程度,以便与光学散射测量结果进行比较。发育缺陷在偏振分辨OCT图像中清晰可见,表明PS-OCT可用于无损测量缺陷的深度和可能的严重程度。在近红外光下,那些在可见光下能以高对比度成像的完整牙齿上的牙釉质缺陷是透明的。这项研究表明,PS-OCT和近红外方法可能有潜力用作评估牙釉质缺陷严重程度和范围的工具。

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