Assembly and characterization of a fluorescence lifetime spectroscopy system for skin lesions diagnostic

Marcelo Saito Nogueira, Ramon Gabriel Texiera Rosa, S. Pratavieira, Camila de Paula D´Almeida, C. Kurachi
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引用次数: 22

Abstract

The fluorescence spectra and fluorescence lifetime analysis in biological tissues has been presented as a technique of a great potential for tissue characterization for diagnostic purposes. The objective of this study is to assemble and characterize a fluorescence lifetime spectroscopy system for diagnostic of clinically similar skin lesions in vivo. The fluorescence lifetime measurements were performed using the Time Correlated Single Photon Counting (Becker & Hickl, Berlin, Germany) technique. Two lasers, one emitting at 378 nm and another at 445 nm, are used for excitation with 20, 50 and 80 MHz repetition rate. A bifurcated optical fiber probe conducts the excitation light to the sample, the collected light is transmitted through bandpass filters and delivered to a hybrid photomultiplier tube detector. The fluorescence spectra were obtained by using a portable spectrometer (Ocean Optics USB-2000-FLG) with the same excitation sources. An instrument response function of about 300 ps was obtained and the spectrum and fluorescence lifetime of a standard fluorescent molecule (Rhodamine 6G) was measured for the calibration of the system ((4.1 ± 0.3) ns). The assembled system was considered robust, well calibrated and will be used for clinical measurements of skin lesions.
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用于皮肤病变诊断的荧光寿命光谱系统的组装和表征
生物组织中的荧光光谱和荧光寿命分析已被认为是一种具有巨大潜力的用于诊断目的的组织表征技术。本研究的目的是组装和表征荧光寿命光谱系统诊断临床相似的皮肤病变在体内。荧光寿命测量使用时间相关单光子计数(Becker & Hickl,柏林,德国)技术进行。使用两个激光器,一个发射波长为378nm,另一个发射波长为445nm,分别以20mhz、50mhz和80mhz的重复频率进行激发。分岔光纤探头将激发光传导至样品,采集到的光通过带通滤波器传输至混合光电倍增管探测器。荧光光谱采用相同激发源的便携式光谱仪(Ocean Optics USB-2000-FLG)获得。获得了约300 ps的仪器响应函数,并测量了标准荧光分子(罗丹明6G)的光谱和荧光寿命((4.1±0.3)ns),用于系统校准。组装的系统被认为是健壮的,校准良好,将用于皮肤病变的临床测量。
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