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Quantitative dental measurements by use of simultaneous frequency-domain laser infrared photothermal radiometry and luminescence

机译:通过同时频域激光红外光热辐射法和发光法对牙齿进行定量测量

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摘要

Modulated (frequency-domain) infrared photothermal radiometry (PTR) is used as a dynamic quantitative dental inspection tool complementary to modulated luminescence (LM) to quantify sound enamel or dentin. A dynamic high-spatial-resolution experimental imaging setup, which can provide simultaneous measurements of laser-induced modulated PTR and LM signals from defects in teeth, has been developed. Following optical absorption of laser photons, the experimental setup can monitor simultaneously and independently the nonradiative (optical-to-thermal) energy conversion by infrared PTR and the radiative deexcitation by LM emission. The relaxation lifetimes (tau(1), tau(2)) and optical absorption, scattering, and spectrally averaged infrared emission coefficients (mu(alpha), mu(s), (μ) over bar (IR)) of enamel are then determined with realistic three-dimensional LM and photothermal models for turbid media followed by multiparameter fits to the data. A quantitative band of values for healthy enamel with respect to these parameters can be generated so as to provide an explicit criterion for the assessment of healthy enamel and, in a future extension, to facilitate the diagnosis of the onset of demineralization in carious enamel. (C) 2002 Optical Society of America. [References: 26]
机译:调制(频域)红外光热辐射测定法(PTR)用作动态定量牙科检查工具,与调制发光(LM)互补,可量化牙釉质或牙本质。已经开发了一种动态的高空间分辨率实验成像装置,该装置可以同时测量来自牙齿缺陷的激光诱导调制的PTR和LM信号。在对激光光子进行光吸收之后,该实验装置可以同时并独立地监视红外PTR进行的非辐射(光热)能量转换和LM发射的辐射去激励。然后测量搪瓷的弛豫寿命(tau(1),tau(2))和光吸收,散射以及光谱平均红外发射系数(mu(alpha),mu(s),(bar)之上的(μ))用逼真的三维LM和光热模型确定混浊介质,然后对数据进行多参数拟合。可以生成关于这些参数的健康牙釉质的定量值带,以便为评估健康牙釉质提供明确的标准,并在将来扩展时,有助于诊断龋牙釉质中脱矿质的开始。 (C)2002年美国眼镜学会。 [参考:26]

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