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首页> 外文期刊>Optics Letters >Two-photon microscope using a fiber-based approach for supercontinuum generation and light delivery to a small-footprint optical head
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Two-photon microscope using a fiber-based approach for supercontinuum generation and light delivery to a small-footprint optical head

机译:双光子显微镜使用基于纤维的方法,用于超级连续发电和光输送到小型光学头部

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摘要

In this Letter, we report a low-cost, portable, two-photon excitation fluorescence microscopy imager that uses a fiberbased approach for both femtosecond. supercontinuum (SC) generation and light delivery to the optical head. The SC generation is based on a tapered polarization-maintaining photonic crystal fiber that uses pre-chirped femtosecond narrowband pulses to generate a coherent SC spectrum with a bandwidth of approximately 300 nm. Using this approach, high-power, near-transform-limited, wavelength-selectable SC pulses are generated and directly delivered to the imaging optical head. Preliminary testing of this imager on brain slices is presented, demonstrating a high signal-to-noise ratio and sub-cellular imaging capabilities to a depth of approximately 200 AM These results demonstrate the suitability of the technology for ex vivo and potentially in vivo cellular-level biomedical imaging applications. (C) 2020 Optical Society of America
机译:在这封信中,我们报告了一种低成本,便携式的双光子励磁荧光显微镜显微镜,它使用FemtoSecond的纤维方法。 超连续(SC)生成和光输送到光学头部。 SC生成基于锥形偏振 - 维持光子晶体光纤,其使用预啁啾的飞秒窄带脉冲来产生具有大约300nm的带宽的相干SC光谱。 使用这种方法,产生高功率,接近变换限制波长可选择的SC脉冲,并直接输送到成像光学头。 提出了对脑切片上该成像仪的初步测试,证明了高信噪比和次蜂窝成像能力,深度约200时,这些结果表明了该技术对离体和潜在的体内蜂窝的适用性 - 级别生物医学成像应用。 (c)2020美国光学学会

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