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首页> 外文期刊>Journal of biomedical optics >Theoretical model for optical oximetry at the capillary level: exploring hemoglobin oxygen saturation through backscattering of single red blood cells
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Theoretical model for optical oximetry at the capillary level: exploring hemoglobin oxygen saturation through backscattering of single red blood cells

机译:毛细管血氧饱和度的理论模型:通过单个红细胞的反向散射探索血红蛋白氧饱和度

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摘要

Oxygen saturation (sO_2) of red blood cells (RBCs) in capillaries can indirectly assess local tissue oxygenation and metabolic function. For example, the altered retinal oxygenation in diabetic retinopathy and local hypoxia during tumor development in cancer are reflected by abnormal sO_2 of local capillary networks. However, it is far from clear whether accurate label-free optical oximetry (i.e., measuring hemoglobin sO_2) is feasible from dispersed RBCs at the single capillary level. The sO_2-dependent hemoglobin absorption contrast present in optical scattering signal is complicated by geometry-dependent scattering from RBCs. We present a numerical study of backscattering spectra from single RBCs based on the first-order Bom approximation, considering practical factors: RBC orientations, size variation, and deformations. We show that the oscillatory spectral behavior of RBC geometries is smoothed by variations in cell size and orientation, resulting in clear sO_2-dependent spectral contrast. In addition, this spectral contrast persists with different mean cellular hemoglobin content and different deformations of RBCs. This study shows for the first time the feasibility of, and provides a theoretical model for, label-free optical oximetry at the single capillary level using backscattering-based imaging modalities, challenging the popular view that such measurements are impossible at the single capillary level.
机译:毛细血管中红细胞(RBC)的氧饱和度(sO_2)可以间接评估局部组织的氧合作用和代谢功能。例如,糖尿病性视网膜病变中视网膜氧合的改变和癌症肿瘤发展过程中的局部缺氧由局部毛细血管网络的异常sO_2反映。但是,从分散的红细胞在单个毛细管水平上进行准确的无标记的光学血氧测定(即测量血红蛋白sO_2)是否可行还远远不够。光学散射信号中存在的sO_2依赖性血红蛋白吸收对比因RBC的几何依赖性散射而变得复杂。我们考虑到实际因素:RBC方向,尺寸变化和变形,基于一阶Bom逼近,对单个RBC的反向散射光谱进行了数值研究。我们表明,RBC几何形状的振荡光谱行为通过细胞大小和方向的变化而变得平滑,从而导致清晰的sO_2依赖性光谱对比度。另外,这种光谱对比在不同的平均细胞血红蛋白含量和不同的红细胞变形情况下仍然存在。这项研究首次展示了使用基于反向散射的成像方式在单毛细管水平上进行无标记光学血氧测定的可行性,并为其提供了理论模型,这挑战了这样一种普遍观点,即在单毛细管水平上无法进行此类测量。

著录项

  • 来源
    《Journal of biomedical optics》 |2017年第2期|025002.1-025002.8|共8页
  • 作者单位

    Northwestern University, Department of Biomedical Engineering, Evanston, Illinois, United States;

    Northwestern University, Department of Chemical and Biological Engineering, Evanston, Illinois, United States;

    Northwestern University, Department of Biomedical Engineering, Evanston, Illinois, United States;

    Northwestern University, Department of Biomedical Engineering, Evanston, Illinois, United States ,Northwestern University, Department of Ophthalmology, Chicago, Illinois, United States;

    Boston University, Department of Medicine, Boston, Massachusetts, United States;

    Northwestern University, Department of Biomedical Engineering, Evanston, Illinois, United States;

  • 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

    optical oximetry; capillary level; red blood cells; backscattering spectra; theoretical model; optical coherence tomography;

    机译:光学血氧饱和度毛细水平;红细胞;反向散射光谱;理论模型;光学相干断层扫描;

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