首页> 外文会议>Conference on Optical Diagnostics and Sensing of Biological Fluids and Glucose and Cholesterol Monitoring Ⅱ, Jan 23-24, 2002, San Jose, USA >Optimization of low coherence interferometry for quantitative analysis of tissue optical properties
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Optimization of low coherence interferometry for quantitative analysis of tissue optical properties

机译:低相干干涉法的优化,用于组织光学特性的定量分析

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Noninvasive monitoring of analytes can be performed with optical coherence tomography (OCT) technique. This technique may allow measurement of optical properties of tissue (attenuation, scattering, optical thickness, etc.) that may be dependent on analyte concentration. Accurate monitoring of analyte concentration requires measurement of the optical properties with high accuracy. The accuracy of measurements depends on OCT technical characteristics and the level of speckle noise. In this paper, we report the results of the calibration of OCT system sensitivity for absolute and relative measurements of the backscattering and total attenuation coefficients in scattering standard, tissue phantoms (suspensions of polystyrene microspheres in water solutions of glucose), and human skin. We measured the OCT sensitivity as a function of depth and used this dependence for correction of signals. The amplitude and spatial period of backscattered signal modulation resulted from speckle noise were measured for the scattering standard and human skin. The dependence of speckle and electronic noise on the range of spatial and temporal averaging of OCT signals was determined. Our studies show that the accuracy of measurement of changes in optical properties of tissue with OCT technique can be significantly improved by reducing of speckle noise and by using the signal correction algorithm.
机译:可以使用光学相干断层扫描(OCT)技术对分析物进行无创监测。该技术可以允许测量可能取决于分析物浓度的组织的光学性质(衰减,散射,光学厚度等)。准确监测分析物浓度需要高精度测量光学性能。测量的准确性取决于OCT的技术特征和斑点噪声的水平。在本文中,我们报告了OCT系统灵敏度的校准结果,该灵敏度用于绝对和相对测量散射标准品,组织体模(聚苯乙烯微球在葡萄糖水溶液中的悬浮液)和人体皮肤中的反向散射和总衰减系数。我们将OCT灵敏度作为深度的函数进行了测量,并将这种依赖性用于信号校正。测量了散斑噪声和人体皮肤散斑噪声导致的背向散射信号调制的幅度和空间周期。确定了斑点和电子噪声对OCT信号的时空平均范围的依赖性。我们的研究表明,通过减少斑点噪声和使用信号校正算法,可以显着提高使用OCT技术测量组织光学特性变化的准确性。

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