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The dynamics of laser-induced changes in human skin autofluorescence - Experimental measurements and theoretical modeling

机译:激光诱导人类皮肤自发荧光变化的动力学-实验测量和理论模型

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To study the temporal dynamics of human skin autofluorescence photobleaching, we measured the autofluorescence spectral changes of skin in vivo during continuous exposure to 442 nm (He-Cd) laser light. Integral intensities were calculated for various spectral wavelength bands and plotted as a function of time. Mathematical analysis of the time function revealed a double-exponential photobleaching process: I(t) = a exp(-t/tau(1)) + b exp(-t/tau(2)) + c, in which tau(1) and tau(2) differed by an order of magnitude. A hypothesis for the mechanism of the double-exponential photobleaching dynamics was proposed and evaluated using Monte Carlo modeling of light propagation in the skin and autofluorescence escape from skin, By combining the fluorophore microdistributions, Monte Carlo simulation results and the variation in fluorescence decrease parameters (a, b, c, tau(1), tau(2)) with increasing exposure intensities a biophysical explanation for the double-exponential photobleaching function was elucidated. The fast decrease term corresponds to laser-induced photobleaching in the stratum corneum, while the slow decrease term represents fluorophore changes in the dermis, The measured autofluorescence photobleaching dynamics can be used to determine the fractional contributions of different skin layers to the total autofluorescence signal measured in vivo. [References: 24]
机译:为了研究人类皮肤自发荧光光漂白的时间动态,我们在连续暴露于442 nm(He-Cd)激光的过程中测量了体内皮肤的自发荧光光谱变化。计算各种光谱波段的积分强度,并将其绘制为时间的函数。时间函数的数学分析揭示了双指数光漂白过程:I(t)= exp(-t / tau(1))+ b exp(-t / tau(2))+ c,其中tau(1 )和tau(2)相差一个数量级。提出了双指数光致漂白动力学机理的假说,并使用蒙特卡洛模型对光在皮肤中的传播和自发荧光从皮肤中逸出进行了评估,并结合了荧光团的微分布,蒙特卡罗模拟结果和荧光降低参数的变化( a,b,c,tau(1),tau(2))随着曝光强度的增加,阐明了双指数光漂白功能的生物物理解释。快速减少项对应于激光诱导的角质层中的光致漂白,而慢速减少项代表真皮中的荧光团变化。测得的自发荧光漂白动力学可用于确定不同皮肤层对测得的总自发荧光信号的分数贡献体内。 [参考:24]

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