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Three-dimensional Fluorescence Spectra of Human Blood

机译:人血的三维荧光光谱

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The absorption spectroscopy and three-dimensional fluorescence spectra of human blood were measured and an attempt was made to exploit the endogenous fluorophores of major peaks in the UV and visible light. Fluorescence excitation wavelength range 260-540 nm were used to induce the fluorescence spectra of human blood, and the corresponding emission spectra were acquired from a range starting 20 nm above the excitation wavelength and extending to 780 nm. Fluorescence excitation-emission matrix was used to exploit endogenous fluorophores. The results indicate that the absorption peaks for human blood appear at 274, 345, 415, 541 and 576 nm, and the remarkable emission peaks occur at excitation-emission wavelength pairs of 260-630, 280-340, 340-460, 450-520 nm. According to the previous referenced studies, these fluorescence peaks were attributed to endogenous porphyrins, tryptophan, NAD(P)H, and FAD, respectively. The results obtained can be used to evaluate the distorting effect of blood on the autofluorescence signals of human tissues for optical biopsy.
机译:测量了人体血液的吸收光谱和三维荧光光谱,并尝试利用紫外线和可见光中主要峰的内源性荧光团。使用260-540 nm的荧光激发波长范围来诱导人类血液的荧光光谱,并从高于激发波长20 nm并延伸至780 nm的范围获取相应的发射光谱。荧光激发-发射矩阵用于开发内源性荧光团。结果表明,人体血液的吸收峰出现在274、345、415、541和576 nm,并且显着的发射峰出现在激发-发射波长对260-630、280-340、340-460、450- 520纳米根据以前的参考研究,这些荧光峰分别归因于内源性卟啉,色氨酸,NAD(P)H和FAD。获得的结果可用于评估血液对人体组织自体荧光信号的扭曲效应,以进行光学活检。

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