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

Sylvain MezilAntonio M Caravaca-AguirreEdward Z ZhangPhilippe MoreauIrène WangPaul C BeardEmmanuel Bossy
Published in: Biomedical optics express (2020)
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.
Keyphrases
  • high resolution
  • minimally invasive
  • fluorescence imaging
  • magnetic resonance imaging
  • red blood cell
  • single molecule
  • air pollution
  • deep learning
  • mass spectrometry
  • convolutional neural network
  • energy transfer