Cara Ana C B, Zezell Denise M, Ana Patricia A, Maldonado Edison P, Freitas Anderson Z
Instituto de Pesquisas Energéticas e Nucleares, São Paulo, CEP 05508-000, SP, Brazil.
Lasers Surg Med. 2014 Nov;46(9):666-71. doi: 10.1002/lsm.22292. Epub 2014 Aug 28.
We aimed to evaluate in the same study two quantitative methods for quantification of incipient caries in human dental enamel by using optical coherence tomography (OCT): the optical attenuation coefficient and the area under the A-scan signal, and to compare their results with those obtained from microhardness analysis.
STUDY DESIGN/MATERIALS AND METHODS: One hundred and sixty samples were obtained from 40 sound human third molars, which had their crowns sectioned. Simulated caries were created by a pH cycling method. OCT measurements were performed on the samples, before and after the induced demineralization. We determined the total optical attenuation coefficient from the OCT signal in each site and evaluated the sensitivity and specificity of this approach to the detection of the demineralization. Also, the areas under the OCT curves (AUC-OCT) and those from sectional microhardness tests (AUC-MH) were compared.
Both the analysis of the optical attenuation coefficient and the AUC-OCT were adequate to efficiently distinguish sound and demineralized samples with sensitivity of 0.93 and specificity of 0.96. The AUC-MH and the AUC-OCT data presented linear relationship and correlation of 0.99.
Both methods for signal analysis from OCT allowed detection of demineralization with good performance. The AUC-OCT approach enables obtaining a linear relation with the microhardness results, for a quantitative assessment of mineral loss in human teeth.
在同一研究中,我们旨在运用光学相干断层扫描(OCT)评估两种定量检测人类牙釉质早期龋的方法:光学衰减系数和A扫描信号下的面积,并将其结果与显微硬度分析所得结果进行比较。
研究设计/材料与方法:从40颗健康人第三磨牙获取160个样本,将其牙冠进行切片。采用pH循环法制造模拟龋。在诱导脱矿前后对样本进行OCT测量。我们从每个部位的OCT信号中确定总光学衰减系数,并评估该方法对检测脱矿的敏感性和特异性。此外,还比较了OCT曲线下的面积(AUC - OCT)和切片显微硬度测试的面积(AUC - MH)。
光学衰减系数分析和AUC - OCT均足以有效区分健康样本和脱矿样本,敏感性为0.93,特异性为0.96。AUC - MH与AUC - OCT数据呈现线性关系,相关性为0.99。
两种来自OCT的信号分析方法均能良好地检测到脱矿情况。AUC - OCT方法能够与显微硬度结果建立线性关系,用于定量评估人类牙齿的矿物质流失。