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基于光纤的双光子显微镜,用于超连续谱产生和将光传输到小尺寸光探头。

Two-photon microscope using a fiber-based approach for supercontinuum generation and light delivery to a small-footprint optical head.

出版信息

Opt Lett. 2020 Feb 15;45(4):909-912. doi: 10.1364/OL.381571.

Abstract

In this Letter, we report a low-cost, portable, two-photon excitation fluorescence microscopy imager that uses a fiber-based 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 µm. These results demonstrate the suitability of the technology for ex vivo and potentially in vivo cellular-level biomedical imaging applications.

摘要

在这封信件中,我们报告了一种低成本、便携式的双光子激发荧光显微镜成像仪,它使用基于光纤的方法来产生飞秒超连续谱 (SC) 和将光传输到光学头。SC 的产生基于锥形保偏光子晶体光纤,该光纤使用预啁啾飞秒窄带脉冲来产生带宽约为 300nm 的相干 SC 光谱。通过这种方法,可以产生高功率、近变换限制、波长可选的 SC 脉冲,并直接传输到成像光学头。初步测试表明,该成像仪在脑切片上具有高信噪比和亚细胞成像能力,深度约为 200µm。这些结果表明该技术适用于离体和潜在的体内细胞水平的生物医学成像应用。

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