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利用光热辐射测量法和调制发光技术定量评估模拟人牙釉质龋的动力学。

Quantitative evaluation of the kinetics of human enamel simulated caries using photothermal radiometry and modulated luminescence.

机构信息

University of Toronto, Center for Advanced Diffusion-Wave Technologies, Department of Mechanical and Industrial Engineering, 5 King's College Road, Toronto, Ontario, M5S 3G8, Canada.

出版信息

J Biomed Opt. 2011 Jul;16(7):071406. doi: 10.1117/1.3564909.

Abstract

Photothermal radiometry and modulated luminescence (PTR-LUM) is an emerging nondestructive methodology applied toward the characterization and quantification of dental caries. We evaluate the efficacy of PTR-LUM in vitro to detect, monitor, and quantify human enamel caries. Artificial caries are created in extracted human molars (n = 15) using an acidified gel system (pH 4.5) for 10 or 40 days. PTR-LUM frequency scans (1 Hz-1 kHz) are performed before and during demineralization. Transverse microradiography (TMR) analysis, the current gold standard, follows at treatment conclusion to determine the mineral loss and depth of the artificially demineralized lesions. A theoretical model is applied to PTR experimental data to evaluate the changes in optothermophysical properties of demineralized enamel as a function of time. Higher optical scattering coefficients and poorer thermophysical properties are characteristic of the growing demineralized lesions, as verified by TMR, where the generated microporosities of the subsurface lesion confine the thermal-wave centroid. Enhanced optical scattering coefficients of demineralized lesions result in poorer luminescence yield due to scattering of both incident and converted luminescent photons. PTR-LUM sensitivity to changes in tooth mineralization coupled with opto-thermophysical property extraction illustrates the technique's potential for nondestructive quantification of enamel caries.

摘要

光热辐射测量和调制发光(PTR-LUM)是一种新兴的非破坏性方法,应用于龋齿的特征描述和定量分析。我们评估了 PTR-LUM 在体外检测、监测和量化人牙釉质龋的效果。使用酸化凝胶系统(pH 值 4.5)在 10 或 40 天内人工创建人工龋(n = 15)。在脱矿过程中进行 PTR-LUM 频率扫描(1 Hz-1 kHz)。横向显微放射照相术(TMR)分析是目前的金标准,在治疗结束时进行,以确定人工脱矿病变的矿物质损失和深度。应用理论模型对 PTR 实验数据进行评估,以评估脱矿牙釉质光热物理性质随时间的变化。更高的光散射系数和更差的热物理性能是脱矿病变不断发展的特征,这通过 TMR 得到了验证,其中表面下病变的微孔限制了热波质心。脱矿病变的增强光散射系数导致荧光产率变差,这是由于入射和转换的荧光光子的散射。PTR-LUM 对牙齿矿化变化的敏感性以及光热物理性质的提取说明了该技术在无损定量分析牙釉质龋方面的潜力。

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