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Resolution improvement in two-photon fluorescence microscopy with a single-mode fiber

机译:单模光纤在双光子荧光显微镜中的分辨率提高

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摘要

The dependence of spectral broadening of an ultrashort-pulsed laser beam on the fiber length and the illumination power is experimentally characterized in order to deliver the laser for two-photon fluorescence microscopy. It is found that not only the spectral width but also the spectral blue shift increases with the fiber length and illumination power, owing to the nonlinear response in the fiber. For an illumination power of 400 mW in a 3-m-long single-mode fiber, the spectral blue shift is as large as 15 nm. Such a spectral blue shift enhances the contribution from the short-wavelength components within the pulsed beam and leads to an improvement in resolution under two-photon excitation, whereas the efficiency of two-photon excitation is slightly reduced because of the temporal broadening of the pulsed beam. The experimental measurement of the axial response to a two-photon fluorescence polymer block confirms this feature. (C) 2002 Optical Society of America. [References: 16]
机译:实验上表征了超短脉冲激光束的光谱展宽对光纤长度和照明功率的依赖性,以便将激光输送至双光子荧光显微镜。发现由于光纤中的非线性响应,不仅光谱宽度而且光谱蓝移随光纤长度和照明功率而增加。对于3 m长的单模光纤中的400 mW的照明功率,光谱蓝移高达15 nm。这种光谱蓝移增强了脉冲光束中短波长分量的贡献,并导致在双光子激发下分辨率的提高,而由于脉冲的时间展宽,双光子激发的效率略有降低。光束。对两光子荧光聚合物嵌段的轴向响应的实验测量证实了这一特征。 (C)2002年美国眼镜学会。 [参考:16]

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