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Increased signals from short-wavelength-excited fluorescent molecules using sub-Ti:Sapphire wavelengths

机译:使用亚Ti:蓝宝石波长的短波长激发荧光分子发出的信号增加

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摘要

We report the use of an all-solid-state ultrashort pulsed source specifically for two-photon microscopy at wavelengths shorter than those of the conventional Ti:Sapphire laser. Our approach involves sum–frequency mixing of the output from an optical parametric oscillator (λ= 1400–1640 nm) synchronously pumped by a Yb-doped fibre laser (λ= 1064 nm), with the residual pump radiation. This generated an fs-pulsed output tunable in the red spectral region (λ= 620–636 nm, ∼150 mW, 405 fs, 80 MHz, M2∼ 1.3). We demonstrate the performance of our ultrashort pulsed system using fluorescently labelled and autofluorescent tissue, and compare with conventional Ti:Sapphire excitation. We observe a more than 3-fold increase in fluorescence signal intensity using our visible laser source in comparison with the Ti:Sapphire laser for two-photon excitation at equal illumination peak powers of 1.16 kW or less.
机译:我们报告了使用全固态超短脉冲源,专门用于双光子显微镜,波长比传统的Ti:Sapphire激光器短。我们的方法涉及掺Y光纤激光器(λ= 1064 nm)同步泵浦的光学参量振荡器(λ= 1400–1640 nm)的输出和剩余泵浦辐射的总和频率混合。这产生了一个在红色光谱区域(λ= 620–636 nm,〜150 mW,405 fs,80 MHz,M 2 〜1.3)可调的fs脉冲输出。我们演示了使用荧光标记和自发荧光组织的超短脉冲系统的性能,并与常规的Ti:Sapphire激发进行了比较。与在1.16 kW或更低的相同照明峰值功率下进行双光子激发的Ti:Sapphire激光器相比,我们的可见激光源观察到的荧光信号强度增加了3倍以上。

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