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Method for depth-resolved quantitation of optical properties in layered media using spatially modulated quantitative spectroscopy

机译:使用空间调制定量光谱对层状介质中光学性质进行深度分辨定量的方法

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摘要

We have demonstrated that spatially modulated quantitative spectroscopy (SMoQS) is capable of extracting absolute optical properties from homogeneous tissue simulating phantoms that span both the visible and near-infrared wavelength regimes. However, biological tissue, such as skin, is highly structured, presenting challenges to quantitative spectroscopic techniques based on homogeneous models. In order to more accurately address the challenges associated with skin, we present a method for depth-resolved optical property quantitation based on a two layer model. Layered Monte Carlo simulations and layered tissue simulating phantoms are used to determine the efficacy and accuracy of SMoQS to quantify layer specific optical properties of layered media. Initial results from both the simulation and experiment show that this empirical method is capable of determining top layer thickness within tens of microns across a physiological range for skin. Layer specific chromophore concentration can be determined to < ± 10% the actual values, on average, whereas bulk quantitation in either visible or near infrared spectroscopic regimes significantly underestimates the layer specific chromophore concentration and can be confounded by top layer thickness.
机译:我们已经证明,空间调制定量光谱(SMoQS)能够从模拟可见光和近红外波长范围的均质组织中提取绝对光学特性。然而,诸如皮肤的生物组织是高度结构化的,这对基于均质模型的定量光谱技术提出了挑战。为了更准确地解决与皮肤相关的挑战,我们提出了一种基于两层模型的深度分辨光学性质定量方法。分层蒙特卡洛模拟和分层组织模拟体模用于确定SMoQS的功效和准确性,以量化分层介质的层特定光学特性。来自模拟和实验的初步结果表明,这种经验方法能够确定整个皮肤生理范围内数十微米以内的顶层厚度。平均而言,可以将层比色基的浓度确定为实际值的<±10%,而可见光或近红外光谱中的定量分析显着低估了层比色基的浓度,并且可能与顶层厚度混淆。

著录项

  • 来源
    《Journal of biomedical optics》 |2011年第7期|p.077002.1-077002.8|共8页
  • 作者单位

    University of California-Irvine, Beckman Laser Institute, 1002 Health Sciences Road, Irvine, California 92612;

    University of California-Irvine, Beckman Laser Institute, 1002 Health Sciences Road, Irvine, California 92612;

    Modulated Imaging, Inc., 1002 Health Sciences Road, Irvine, California 92612;

    University of California-Irvine, Beckman Laser Institute, 1002 Health Sciences Road, Irvine, California 92612;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    spectroscopy; tissues; turbid media; spatial frequencies; reflectance;

    机译:光谱学组织介质混浊;空间频率;反射率;

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