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Fiber-based combined optical coherence and multiphoton endomicroscopy

机译:基于光纤的光学相干和多光子内窥镜

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摘要

A fiber-based multimodal imaging system that combines multiphoton microscopy (MPM) with Fourier domain optical coherence microscopy (OCM) is reported. The system uses a fiber-based femtosecond laser, a fiber coupler, and a double-clad fiber (DCF) device. The fiber laser has a central wavelength of 1.04 μm and bandwidth of 29 nm. Longer excitation wavelength is used to increase penetration depth and increase the excitation efficiency for dyes, such as red fluorescent dyes. A single mode fiber coupler is used to replace the free-space beam splitter and one arm of the coupler is fused with a double-clad fiber device. The MPM and OCM share the same excitation light path in the core of a double-clad fiber, while the OCM and MPM signals were collected by the core and clad of the double-clad fiber, respectively. The performance of the introduced double-clad device is analyzed. The device can confine all the excitation light in the core and has a collection efficiency of 20% for the MPM signal. The efficiency can be further increased by fusing more multimode fibers with the DCF. Simultaneous optical coherence microscopic imaging, second harmonic generation imaging, and two-photon excitation fluorescence imaging are demonstrated in biological samples.
机译:报告了一种基于光纤的多峰成像系统,该系统将多光子显微镜(MPM)与傅里叶域光学相干显微镜(OCM)结合在一起。该系统使用基于光纤的飞秒激光器,光纤耦合器和双包层光纤(DCF)设备。光纤激光器的中心波长为1.04μm,带宽为29 nm。较长的激发波长用于增加染料的渗透深度并提高激发效率,例如红色荧光染料。单模光纤耦合器用于替换自由空间分束器,耦合器的一个臂与双包层光纤设备融合在一起。 MPM和OCM在双包层光纤的纤芯中共享相同的激发光路,而OCM和MPM信号分别由双包层光纤的纤芯和包层收集。分析了引入的双覆层器件的性能。该设备可以将所有激发光限制在芯中,并且对MPM信号的收集效率为20%。通过将更多的多模光纤与DCF融合,可以进一步提高效率。在生物样品中证实了同时光学相干显微成像,二次谐波生成成像和双光子激发荧光成像。

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