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Three-dimensional Hessian matrix-based quantitative vascular imaging of rat iris with optical-resolution photoacoustic microscopy in vivo

机译:基于三维Hessian矩阵的大鼠虹膜定量血管成像的光学分辨光声显微镜体内。

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摘要

For the diagnosis and evaluation of ophthalmic diseases, imaging and quantitative characterization of vasculature in the iris are very important. The recently developed photoacoustic imaging, which is ultrasensitive in imaging endogenous hemoglobin molecules, provides a highly efficient label-free method for imaging blood vasculature in the iris. However, the development of advanced vascular quantification algorithms is still needed to enable accurate characterization of the underlying vasculature. We have developed a vascular information quantification algorithm by adopting a three-dimensional (3-D) Hessian matrix and applied for processing iris vasculature images obtained with a custom-built optical-resolution photoacoustic imaging system (OR-PAM). For the first time, we demonstrate in vivo 3-D vascular structures of a rat iris with a the label-free imaging method and also accurately extract quantitative vascular information, such as vessel diameter, vascular density, and vascular tortuosity. Our results indicate that the developed algorithm is capable of quantifying the vasculature in the 3-D photoacoustic images of the iris in-vivo, thus enhancing the diagnostic capability of the OR-PAM system for vascular-related ophthalmic diseases in vivo.
机译:对于眼科疾病的诊断和评估,虹膜血管系统的成像和定量表征非常重要。最近开发的对内源性血红蛋白分子成像非常敏感的光声成像技术为虹膜中的血管系统成像提供了一种高效的无标记方法。但是,仍然需要开发先进的血管定量算法,以能够准确表征潜在的脉管系统。我们已经通过采用三维(3-D)粗麻布矩阵开发了一种血管信息量化算法,并将其应用于处理通过定制光学分辨率光声成像系统(OR-PAM)获得的虹膜血管图像。我们首次使用无标记成像方法演示了大鼠虹膜的体内3-D血管结构,并且还可以准确提取定量的血管信息,例如血管直径,血管密度和血管曲折度。我们的结果表明,开发的算法能够定量体内虹膜的3D光声图像中的脉管系统,从而增强OR-PAM系统对体内与血管相关的眼科疾病的诊断能力。

著录项

  • 来源
    《Journal of biomedical optics》 |2018年第4期|046006.1-046006.11|共11页
  • 作者单位

    Capital Medical University, School of Biomedical Engineering, Beijing, China,Chinese Academy of Sciences, Shenzhen Institutes of Advanced Technology, Research Laboratory for Biomedical Optics and Molecular Imaging, Shenzhen, China,Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Beijing, China;

    Chinese Academy of Sciences, Shenzhen Institutes of Advanced Technology, Research Laboratory for Biomedical Optics and Molecular Imaging, Shenzhen, China;

    Chinese Academy of Sciences, Shenzhen Institutes of Advanced Technology, Research Laboratory for Biomedical Optics and Molecular Imaging, Shenzhen, China;

    Chinese Academy of Sciences, Shenzhen Institutes of Advanced Technology, Research Laboratory for Biomedical Optics and Molecular Imaging, Shenzhen, China;

    Chinese Academy of Sciences, Shenzhen Institutes of Advanced Technology, Research Laboratory for Biomedical Optics and Molecular Imaging, Shenzhen, China;

    Capital Medical University, School of Biomedical Engineering, Beijing, China,Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Beijing, China;

    Capital Medical University, School of Biomedical Engineering, Beijing, China,Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Beijing, China;

    Capital Medical University, School of Biomedical Engineering, Beijing, China,Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Beijing, China;

    Capital Medical University, School of Biomedical Engineering, Beijing, China,Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Beijing, China;

    Capital Medical University, School of Biomedical Engineering, Beijing, China,Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Beijing, China;

    Capital Medical University, School of Biomedical Engineering, Beijing, China,Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Beijing, China;

    Capital Medical University, School of Biomedical Engineering, Beijing, China,Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, Beijing, China;

    Chinese Academy of Sciences, Shenzhen Institutes of Advanced Technology, Research Laboratory for Biomedical Optics and Molecular Imaging, Shenzhen, China;

  • 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

    photoacoustic imaging; quantitative vascular imaging; rat iris; optical-resolution photoacoustic microscopy;

    机译:光声成像定量血管成像大鼠虹膜光学分辨率光声显微镜;
  • 入库时间 2022-08-18 03:54:21

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