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A Fiber-Coupled Stimulated Emission Depletion Microscope for Bend-Insensitive Through-Fiber Imaging

机译:用于弯曲不敏感的全光纤成像的光纤耦合受激发射损耗显微镜。

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摘要

We present results for a new type of fiber-coupled stimulated emission depletion (STED) microscope which uses a single fiber to transport STED and excitation light, as well as collect the fluorescence signal. Our method utilizes two higher-order eigenmodes of polarization maintaining (PM) fiber to generate the doughnut-shaped STED beam. The modes are excited with separate beams that share no temporal coherence, yielding output that is independent of fiber bending. We measured the resolution using 45 nm fluorescent beads and found a median bead image size of 116 nm. This resolution does not change as function of fiber bending radius, demonstrating robust operation. We report, for the first time, STED images of fixed biological samples collected in the epi-direction through fiber. Our microscope design shows promise for future use in super-resolution micro-endoscopes and in vivo neural imaging in awake and freely-behaving animals.
机译:我们提出了一种新型的光纤耦合激发发射损耗(STED)显微镜的结果,该显微镜使用单根光纤传输STED和激发光,以及收集荧光信号。我们的方法利用偏振保持(PM)光纤的两个高阶本征模来生成环形的STED光束。这些模式由不共享时间相干性的单独光束激发,从而产生与光纤弯曲无关的输出。我们使用45nm的荧光珠测量分辨率,发现中位珠的图像尺寸为116nm。该分辨率不随光纤弯曲半径而变化,表明运行稳定。我们首次报告了通过纤维沿epi方向收集的固定生物样品的STED图像。我们的显微镜设计显示出有望在超分辨率微型内窥镜和清醒自由行为的动物体内进行体内神经成像的前景。

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