Time-of-flight three-dimensional (3D) imaging has applications that range from industrial inspection to motion tracking. Depth is recovered by measuring the round-trip flight time of laser pulses, typically using collection optics of several centimeters in diameter. We demonstrate near–video-rate 3D imaging through multimode fibers with a total aperture of several hundred micrometers. We implement aberration correction using wavefront shaping synchronized with a pulsed source and scan the scene at ~23,000 points per second. We image moving objects several meters beyond the end of an ~40-centimeters-long fiber of 50-micrometer core diameter at frame rates of ~5 hertz. Our work grants far-field depth-resolving capabilities to ultrathin microe...
Acquiring high-contrast optical images deep inside biological tissues is still a challenging problem...
Achieving intravital optical imaging with diffraction-limited spatial resolution of deep-brain struc...
A novel minimally invasive micro-endoscopes utilizing disordered light within a standard multimode o...
We measure the modal dispersion occurring in a single multimode fibre and account for this using a d...
Holographic wavefront manipulation enables converting hair-thin multimode optical fibers into minima...
Progress in neuroscience relies on new techniques for investigating the complex dynamics of neuronal...
Time-of-flight three-dimensional imaging is an important tool for applications such as object recogn...
Compact microendoscopes use multicore optical fibers (MOFs) to visualize hard-to-reach regions of th...
Imaging through a multimode fibre can be achieved using a DMD. Using Q-switched laser we extend this...
This is the final version. Available on open access from the American Association for the Advancemen...
Imaging by a multimode optical fiber (MMF) has attracted much attention because single MMF could be ...
We shape fs optical pulses and deliver them in a single spatial mode to the input of a multimode fib...
In this Letter, we propose a compact multimode fiber endoscope which employs wavefront shaping with ...
Optical imaging in biomedicine provides pathophysiological information with high resolution, high sp...
© 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement.We pre...
Acquiring high-contrast optical images deep inside biological tissues is still a challenging problem...
Achieving intravital optical imaging with diffraction-limited spatial resolution of deep-brain struc...
A novel minimally invasive micro-endoscopes utilizing disordered light within a standard multimode o...
We measure the modal dispersion occurring in a single multimode fibre and account for this using a d...
Holographic wavefront manipulation enables converting hair-thin multimode optical fibers into minima...
Progress in neuroscience relies on new techniques for investigating the complex dynamics of neuronal...
Time-of-flight three-dimensional imaging is an important tool for applications such as object recogn...
Compact microendoscopes use multicore optical fibers (MOFs) to visualize hard-to-reach regions of th...
Imaging through a multimode fibre can be achieved using a DMD. Using Q-switched laser we extend this...
This is the final version. Available on open access from the American Association for the Advancemen...
Imaging by a multimode optical fiber (MMF) has attracted much attention because single MMF could be ...
We shape fs optical pulses and deliver them in a single spatial mode to the input of a multimode fib...
In this Letter, we propose a compact multimode fiber endoscope which employs wavefront shaping with ...
Optical imaging in biomedicine provides pathophysiological information with high resolution, high sp...
© 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement.We pre...
Acquiring high-contrast optical images deep inside biological tissues is still a challenging problem...
Achieving intravital optical imaging with diffraction-limited spatial resolution of deep-brain struc...
A novel minimally invasive micro-endoscopes utilizing disordered light within a standard multimode o...