Kang Hobin, Jiao Jian J, Lee Chulsung, Le Michael H, Darling Cynthia L, Fried Daniel
Division of Biomaterials and Bioengineering, Department of Preventative and Restorative Dental Sciences, San Francisco School of Dentistry, University of California, San Francisco, CA 94143-0758 USA.
IEEE J Sel Top Quantum Electron. 2010 Jul;16(4):870-876. doi: 10.1109/JSTQE.2009.2033610.
New methods are needed for the nondestructive measurement of tooth demineralization and remineralization to monitor the progression of incipient caries lesions (tooth decay) for effective nonsurgical intervention and to evaluate the performance of anticaries treatments such as chemical treatments or laser irradiation. Studies have shown that optical coherence tomography (OCT) has great potential to fulfill this role since it can be used to measure the depth and severity of early lesions with an axial resolution exceeding 10 µm, it is easy to apply in vivo and it can be used to image the convoluted topography of tooth occlusal surfaces. In this paper, a review of the use of polarization-sensitive-OCT for the measurement of tooth demineralization is provided along with some recent results regarding improved methods for the detection of caries lesions in the earliest stages of development. Automated methods of analysis were used to measure the depth and severity of demineralized bovine enamel produced using simulated caries models that emulate demineralization in the mouth. Significant differences in the depth and integrated reflectivity from the lesions were detected after only a few hours of demineralization. These results demonstrate that cross-polarization-OCT is ideally suited for the nondestructive assessment of early demineralization.
需要新的方法来对牙齿脱矿和再矿化进行无损测量,以监测早期龋损(蛀牙)的进展情况,从而进行有效的非手术干预,并评估诸如化学治疗或激光照射等防龋治疗的效果。研究表明,光学相干断层扫描(OCT)很有潜力发挥这一作用,因为它可用于测量早期病损的深度和严重程度,轴向分辨率超过10 µm,易于在体内应用,还可用于对牙齿咬合面复杂的地形进行成像。本文综述了偏振敏感OCT在牙齿脱矿测量中的应用,并给出了一些有关在龋损发展最早期阶段检测龋损的改进方法的最新结果。采用自动分析方法测量了使用模拟口腔脱矿的龋齿模型制作的脱矿牛牙釉质的深度和严重程度。脱矿仅数小时后,就检测到了病损深度和综合反射率的显著差异。这些结果表明,交叉偏振OCT非常适合早期脱矿的无损评估。