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Single-shot hybrid photoacoustic-fluorescent microendoscopy through a multimode fiber with wavefront shaping

机译:单次混合光声 - 荧光显微镜通过多模纤维具有波前塑造

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摘要

We present a minimally-invasive endoscope based on a multimode fiber that combines photoacoustic and fluorescence sensing. From the measurement of a transmission matrix during a prior calibration step, a focused spot is produced and raster-scanned over a sample at the distal tip of the fiber by use of a fast spatial light modulator. An ultra-sensitive fiber-optic ultrasound sensor for photoacoustic detection placed next to the fiber is combined with a photodetector to obtain both fluorescence and photoacoustic images with a distal imaging tip no larger than 250 µm. The high signal-to-noise ratio provided by wavefront shaping based focusing and the ultra-sensitive ultrasound sensor enables imaging with a single laser shot per pixel, demonstrating fast two-dimensional hybrid in vitro imaging of red blood cells and fluorescent beads.
机译:我们介绍基于多模光纤的微创内窥镜,所述多模光纤结合光声和荧光感测。通过在先前校准步骤期间的透射矩阵的测量,通过使用快速空间光调制器在光纤远端尖端的样品上产生聚焦点并将光谱扫描。用于光纤维检测的光声检测的超敏感光纤超声传感器与光电探测器组合,以获得具有远端成像尖端的荧光和光声图像,其远端成像尖端不大于250μm。由基于波前整形的聚焦和超敏感超声传感器提供的高信噪比使得能够每像素的单个激光射击成像,证明了红细胞和荧光珠的快速二维杂化体外成像。

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