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Direct noninvasive observation of near infrared photobleaching of autofluorescence in human volar side fingertips in vivo

机译:直接无创观察人体手掌侧指尖的自发荧光的近红外光漂白

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Human transdermal in vivo spectroscopic applications for tissue analysis involving near infrared (NIR) light often must contend with broadband NIR fluorescence that, depending on what kind of spectroscopy is being employed, can degrade signal to noise ratios and dynamic range. Such NIR fluorescence, i.e. "autofluorescence" is well known to originate in blood tissues and various other endogenous materials associated with the static tissues. Results of recent experiments on human volar side fingertips in vivo are beginning to provide a relative ordering of the contributions from various sources. Preliminary results involving the variation in the bleaching effect across different individuals suggest that for 830 nm excitation well over half of the total fluorescence comes from the static tissues and remainder originates with the blood tissues, i.e. the plasma and the hematocrit. Of the NIR fluorescence associated with the static tissue, over half originates with products of well-known post-enzymatic glycation reactions, i.e. Maillard chemistry, in the skin involving glucose and other carbohydrates and skin proteins like collagen and cytosol proteins.
机译:用于涉及近红外(NIR)光的组织分析的人体透皮体内光谱应用通常必须与宽带NIR荧光相抗衡,这取决于所采用的光谱类型,会降低信噪比和动态范围。众所周知,这种NIR荧光,即“自发荧光”起源于血液组织和与静态组织有关的各种其他内源性材料。最近在体内人类手掌侧指尖上进行的实验结果开始提供来自各种来源的贡献的相对排序。涉及不同个体的漂白效果变化的初步结果表明,对于830 nm激发,总荧光的一半以上来自静态组织,其余部分则来自血液组织,即血浆和血细胞比容。在与静态组织相关的NIR荧光中,一半以上来自皮肤中涉及葡萄糖和其他碳水化合物以及诸如胶原蛋白和胞质溶胶蛋白的皮肤蛋白质的众所周知的酶促糖基化反应(即美拉德化学)的产物。

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