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用于黑色素瘤诊断的多光子激光断层扫描光谱荧光寿命检测及选择性黑色素成像

Spectral fluorescence lifetime detection and selective melanin imaging by multiphoton laser tomography for melanoma diagnosis.

作者信息

Dimitrow Enrico, Riemann Iris, Ehlers Alexander, Koehler Martin Johannes, Norgauer Johannes, Elsner Peter, König Karsten, Kaatz Martin

机构信息

Department of Dermatology and Allergology, University Hospital, Jena, Germany.

出版信息

Exp Dermatol. 2009 Jun;18(6):509-15. doi: 10.1111/j.1600-0625.2008.00815.x. Epub 2009 Feb 25.

Abstract

Multiphoton excited tissue fluorescence summarises the emission of all naturally occurring endogenous fluorescent bio-molecules with their often overlapping fluorescence spectra. Common fluorescence intensity measurements could not be utilised to distinguish between different fluorophores or metabolic states. To overcome this limitation, we investigated new procedures of selective melanin imaging and spectral fluorescence lifetime imaging in combination with high resolution multiphoton laser tomography. Overall 46 melanocytic lesions of human skin were analysed. We suggested that fluorescence light, detected in such a way, may yield additional information for melanoma diagnostics. Remarkable differences in lifetime behaviour of keratinocytes in contrast to melanocytes were observed. Fluorescence lifetime distribution was found in correlation with the intracellular amount of melanin. Spectral analysis of melanoma revealed a main fluorescence peak around 470 nm in combination with an additional peak close to 550 nm throughout all epidermal layers. Excitation at 800 nm shows a selectively observable fluorescence of melanin containing cells and offers the possibility of cell classification. Procedures of selective imaging as well as spectral fluorescence lifetime imaging by means of multiphoton laser tomography support diagnostic decisions and may improve the process of non-invasive early detection of melanoma.

摘要

多光子激发组织荧光汇总了所有天然存在的内源性荧光生物分子的发射,它们的荧光光谱常常重叠。常见的荧光强度测量方法无法用于区分不同的荧光团或代谢状态。为了克服这一局限性,我们研究了选择性黑色素成像和光谱荧光寿命成像与高分辨率多光子激光断层扫描相结合的新方法。总共分析了46例人类皮肤黑素细胞病变。我们认为,以这种方式检测到的荧光可能会为黑色素瘤诊断提供额外信息。观察到角质形成细胞与黑素细胞在寿命行为上存在显著差异。发现荧光寿命分布与细胞内黑色素含量相关。黑色素瘤的光谱分析显示,在所有表皮层中,主要荧光峰在470nm左右,同时还有一个接近550nm的附加峰。800nm激发显示含黑色素细胞的荧光可选择性观察到,并提供了细胞分类的可能性。通过多光子激光断层扫描进行选择性成像以及光谱荧光寿命成像的方法有助于诊断决策,并可能改善黑色素瘤非侵入性早期检测的过程。

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