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首页> 外文期刊>Journal of biomedical optics >Comprehensive vascular imaging using optical coherence tomography-based angiography and photoacoustic tomography
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Comprehensive vascular imaging using optical coherence tomography-based angiography and photoacoustic tomography

机译:使用基于光学相干层析成像的血管造影和光声层析成像的全面血管成像

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摘要

Studies have proven the relationship between cutaneous vasculature abnormalities and dermatologi-cal disorders, but to image vasculature noninvasively in vivo, advanced optical imaging techniques are required. In this study, we imaged a palm of a healthy volunteer and three subjects with cutaneous abnormalities with photo-acoustic tomography (PAT) and optical coherence tomography with angiography extension (OCTA). Capillaries in the papillary dermis that are too small to be discerned with PAT are visualized with OCTA. From our results, we speculate that the PA signal from the palm is mostly from hemoglobin in capillaries rather than melanin, knowing that melanin concentration in volar skin is significantly smaller than that in other areas of the skin. We present for the first time OCTA images of capillaries along with the PAT images of the deeper vessels, demonstrating the complementary effective imaging depth range and the visualization capabilities of PAT and OCTA for imaging human skin in vivo. The proposed imaging system in this study could significantly improve treatment monitorinq of dermatological diseases associated with cutaneous vasculature abnormalities.
机译:研究已经证明了皮肤血管异常与皮肤疾病之间的关系,但是要在体内无创地对血管成像,就需要先进的光学成像技术。在这项研究中,我们使用光声层析成像(PAT)和光学相干层析成像与血管造影术扩展(OCTA)对健康志愿者的手掌和三名皮肤异常的受试者进行了成像。乳头真皮中的毛细血管太小而无法用PAT辨别,用OCTA可视化。从我们的结果中,我们推测来自掌心的PA信号主要来自毛细血管中的血红蛋白,而不是黑色素,因为知道掌侧皮肤中黑色素的浓度明显小于皮肤其他区域中的黑色素。我们首次展示毛细血管的OCTA图像以及较深血管的PAT图像,展示了互补的有效成像深度范围以及PAT和OCTA的可视化能力,可在体内对人的皮肤成像。本研究中提出的成像系统可以显着改善与皮肤脉管系统异常相关的皮肤病的治疗监测。

著录项

  • 来源
    《Journal of biomedical optics 》 |2016年第9期| 096011.1-096011.7| 共7页
  • 作者单位

    Medical University of Vienna, Center for Medical Physics and Biomedical Engineering, AKH 4L, Waehringer Guertel 18-20, Vienna 1090, Austria;

    Medical University of Vienna, Center for Medical Physics and Biomedical Engineering, AKH 4L, Waehringer Guertel 18-20, Vienna 1090, Austria;

    Medical University of Vienna, Center for Medical Physics and Biomedical Engineering, AKH 4L, Waehringer Guertel 18-20, Vienna 1090, Austria;

    Medical University of Vienna, Department of Dermatology, Waehringer Guertel 18-20, Vienna 1090, Austria;

    Medical University of Vienna, Center for Medical Physics and Biomedical Engineering, AKH 4L, Waehringer Guertel 18-20, Vienna 1090, Austria;

    Medical University of Vienna, Center for Medical Physics and Biomedical Engineering, AKH 4L, Waehringer Guertel 18-20, Vienna 1090, Austria;

    Insight Photonic Solutions, Inc., 300 South Public Road, Lafayette, Colorado 80026, United States;

    Insight Photonic Solutions, Inc., 300 South Public Road, Lafayette, Colorado 80026, United States;

    Insight Photonic Solutions, Inc., 300 South Public Road, Lafayette, Colorado 80026, United States;

    Medical University of Vienna, Department of Dermatology, Waehringer Guertel 18-20, Vienna 1090, Austria;

    Medical University of Vienna, Center for Medical Physics and Biomedical Engineering, AKH 4L, Waehringer Guertel 18-20, Vienna 1090, Austria;

    Medical University of Vienna, Center for Medical Physics and Biomedical Engineering, AKH 4L, Waehringer Guertel 18-20, Vienna 1090, Austria;

    Medical University of Vienna, Department of Dermatology, Waehringer Guertel 18-20, Vienna 1090, Austria;

    University College London, Department of Medical Physics and Biomedical Engineering, Gower Street, London, United Kingdom;

    University College London, Department of Medical Physics and Biomedical Engineering, Gower Street, London, United Kingdom;

    Medical University of Vienna, Center for Medical Physics and Biomedical Engineering, AKH 4L, Waehringer Guertel 18-20, Vienna 1090, Austria;

    Medical University of Vienna, Center for Medical Physics and Biomedical Engineering, AKH 4L, Waehringer Guertel 18-20, Vienna 1090, Austria;

  • 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 tomography; optical coherence tomography; angiography; human skin; capillary; papillary dermis;

    机译:光声层析成像光学相干断层扫描;血管造影人体皮肤毛细管乳头状真皮;

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