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Miniature fiber-optic multiphoton microscopy system using frequency-doubled femtosecond Er-doped fiber laser

机译:使用倍频飞秒掺Er光纤激光器的微型光纤多光子显微镜系统

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摘要

We report on a miniature fiber-optic multiphoton microscopy (MPM) system based on a frequency-doubled femtosecond Er-doped fiber laser. The femtosecond pulses from the laser source are delivered to the miniature fiber-optic probe at 1.58 µm wavelength, where a standard single mode fiber is used for delivery without the need of free-space dispersion compensation components. The beam is frequency-doubled inside the probe by a periodically poled MgO:LiNbO3 crystal. Frequency-doubled pulses at 786 nm with a maximum power of 80 mW and a pulsewidth of 150 fs are obtained and applied to excite intrinsic signals from tissues. A MEMS scanner, a miniature objective, and a multimode collection fiber are further used to make the probe compact. The miniature fiber-optic MPM system is highly portable and robust. Ex vivo multiphoton imaging of mammalian skins demonstrates the capability of the system in imaging biological tissues. The results show that the miniature fiber-optic MPM system using frequency-doubled femtosecond fiber laser can potentially bring the MPM imaging for clinical applications.
机译:我们报告基于倍频飞秒掺Er光纤激光器的微型光纤多光子显微镜(MPM)系统。来自激光源的飞秒脉冲以1.58 µm的波长传输到微型光纤探头,其中使用标准的单模光纤进行传输,而无需自由空间色散补偿组件。通过周期性极化的MgO:LiNbO3晶体,光束在探头内部倍频。获得了在786 nm处的倍频脉冲,最大功率为80 mW,脉冲宽度为150 fs,并被用于激发组织的固有信号。 MEMS扫描仪,微型物镜和多模收集光纤还用于使探头紧凑。微型光纤MPM系统具有高度的便携性和耐用性。哺乳动物皮肤的离体多光子成像证明了该系统对生物组织成像的能力。结果表明,使用倍频飞秒光纤激光器的微型光纤MPM系统可以为临床应用带来MPM成像。

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