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首页> 外文期刊>Optics Letters >Time-resolved detection enables standard two-photon fluorescence microscopy for in vivo label-free imaging of microvasculature in tissue
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Time-resolved detection enables standard two-photon fluorescence microscopy for in vivo label-free imaging of microvasculature in tissue

机译:时间分辨检测可实现标准的双光子荧光显微镜,用于组织中微血管的无标记体内成像

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摘要

We conducted a systematic study on two-photon excited fluorescence (TPEF) of hemoglobin using the near transform-limited and Gaussian-shaped femtosecond pulse sources. We found that the two-photon action cross section of hemoglobin drops over 2 orders of magnitude in the wavelength range from 550 to 800 nm, while the spectral and temporal characteristics of hemoglobin TPEF are insensitive to the change of excitation wavelength. In particular, our new findings showed that the hemoglobin fluorescence could be excited with sufficient efficiency using a conventional Ti:sapphire laser tuned at the wavelength close to 700nm. With the employment of a time-resolved detection method, we demonstrated that the TPEF signals of hemoglobin excited by a Ti:sapphire laser could be clearly differentiated from other nonlinear signals presented within the living biological tissues, indicating that a standard TPEF microscope can become a routine tool for in vivo label-free microangiography imaging.
机译:我们使用近变换极限和高斯型飞秒脉冲源对血红蛋白的双光子激发荧光(TPEF)进行了系统研究。我们发现,血红蛋白的双光子作用截面在550至800 nm的波长范围内下降超过2个数量级,而血红蛋白TPEF的光谱和时间特性对激发波长的变化不敏感。尤其是,我们的新发现表明,使用常规的Ti:蓝宝石激光调谐到接近700nm的波长,可以以足够的效率激发血红蛋白荧光。通过采用时间分辨检测方法,我们证明了由Ti:蓝宝石激光激发的血红蛋白的TPEF信号可以与活生物体组织中呈现的其他非线性信号清楚地区分开,这表明标准TPEF显微镜可以成为体内无标记微血管造影成像的常规工具。

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