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Excitation-Emission Matrices Measurements of Human Cutaneous Lesions - Tool for Evaluation of Fluorescence Origin

机译:人体皮损的激发-发射矩阵测量-荧光起源评估工具

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摘要

The light induced fluorescence (LIF) technique has the potential of providing real-time diagnosis of malignant and premalignant skin tissue; however, human skin is a multilayered and inhomogeneous organ with different optical properties that complicate the analysis of cutaneous fluorescence spectra. In spite of the difficulties related to the detection and analysis of fluorescent data from skin lesions, this technique is among the most widely applied techniques in laboratorial and pre-clinical investigations for early skin neoplasia diagnosis. The important point is to evaluate all sources of intrinsic fluorescence and find any significant alterations distinguishing the normal skin from a cancerous state of the tissue; this would make the autofluorescence signal obtained useful for the development of a non-invasive diagnostic tool for the dermatological practice. Our investigations presented here were based on ex vivo point-by-point measurements of excitation-emission matrices (EEM) from excised tumor lesions and the surrounding skin taken during the daily clinical practice of Queen Jiovanna-ISUL University Hospital, Sofia, the local Ethical Committee's approval having already been obtained. The fluorescence emission was measured between 300 run and 800 nm using excitation in the 280-440 ran spectral range. In the process of excitation-emission matrices (EEM) measurements we could establish the origin of the autofluorescence and the compounds related by assigning the excitation and emission maxima obtained during the experiments. The EEM were compared for normal human skin, basal cell carcinoma, squamous cell carcinoma, benign nevi and malignant melanoma lesions to obtain information for the most common skin malignancies and their precursors. The main spectral features and the applicability of the technique of autofluorescent spectroscopy of human skin in general as an initial diagnostic tool are discussed as well.
机译:光诱导荧光(LIF)技术具有提供恶性和恶变前皮肤组织实时诊断的潜力。然而,人类皮肤是具有不同光学性质的多层且不均匀的器官,这使皮肤荧光光谱的分析变得复杂。尽管与检测和分析来自皮肤病变的荧光数据有关的困难,但是该技术是在实验室和临床前研究中用于早期皮肤瘤形成诊断的最广泛应用的技术之一。重要的一点是评估所有固有荧光源,并发现将正常皮肤与组织癌变状态区分开的任何显着变化。这将使获得的自发荧光信号对于开发用于皮肤病学实践的非侵入性诊断工具有用。我们在此进行的研究是基于在当地伦理学家索菲亚皇后吉奥凡纳-伊苏尔大学医院的日常临床实践中,对切除的肿瘤病变和周围皮肤的激发-发射矩阵(EEM)进行逐点逐点测量的结果已经获得委员会的批准。使用在280-440nm光谱范围内的激发在300nm和800nm之间测量荧光发射。在激发-发射矩阵(EEM)测量过程中,我们可以通过指定实验中获得的激发和发射最大值来建立自发荧光和相关化合物的起源。比较了正常人皮肤,基底细胞癌,鳞状细胞癌,良性痣和恶性黑色素瘤病变的EEM,以获得最常见的皮肤恶性肿瘤及其前体的信息。讨论了作为人体初步诊断工具的人体皮肤自发荧光光谱技术的主要光谱特征和适用性。

著录项

  • 来源
    《Biophotonics-Riga 2013》|2013年|90320A.1-90320A.7|共7页
  • 会议地点 Riga(LV)
  • 作者单位

    Institute of Electronics, Bulgarian Academy of Sciences, 72, Tsarigradsko Chaussee blvd.,1784 Sofia, Bulgaria;

    Institute of Electronics, Bulgarian Academy of Sciences, 72, Tsarigradsko Chaussee blvd.,1784 Sofia, Bulgaria;

    Institute of Electronics, Bulgarian Academy of Sciences, 72, Tsarigradsko Chaussee blvd.,1784 Sofia, Bulgaria;

    Queen Jiovanna-ISUL University Hospital, 8, Bialo More str., 1527 Sofia, Bulgaria;

    Queen Jiovanna-ISUL University Hospital, 8, Bialo More str., 1527 Sofia, Bulgaria;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    autofluorescence spectroscopy; excitation-emission matrix; basal cell carcinoma; malignant melanoma;

    机译:自发荧光光谱;激发发射矩阵基底细胞癌;恶性黑色素瘤;
  • 入库时间 2022-08-26 13:58:22

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