Multimode fibres have recently been employed as high-resolution ultra-thin endoscopes, capable of imaging biological structures deep inside tissue in vivo. Here, we extend this technique to label-free non-linear microscopy with chemical contrast using coherent anti-Stokes Raman scattering (CARS) through a multimode fibre endoscope, which opens up new avenues for instant and in-situ diagnosis of potentially malignant tissue. We use a commercial 125 µm diameter, 0.29 NA GRIN fibre, and wavefront shaping on an SLM is used to create foci that are scanned behind the fibre facet across the sample. The chemical selectivity is demonstrated by imaging 2 µm polystyrene and 2.5 µm PMMA beads with per pixel integration time as low as 1 ms for epi-detec...
Photoacoustic (PA) endoscopy has shown significant potential for clinical diagnosis and surgical gui...
International audienceCoherent Raman scattering microscopy is a fast, label-free, and chemically spe...
Microendoscopes based on optical fibres have recently come to the fore as promising candidates allow...
Nonlinear optical endoscopy is an attractive technique for biomedical imaging since it promises to g...
Endoscopy is a key technology for minimally-invasive optical access to deep tissues in humans and li...
International audienceWe demonstrate a 2 mm diameter highly multimodal nonlinear micro-endoscope all...
Raman spectroscopy is a valuable tool for non-invasive and label-free identification of sample chemi...
International audienceWe demonstrate a 2 mm diameter highly multimodal nonlinear micro-endoscope all...
Progress in neuroscience relies on new techniques for investigating the complex dynamics of neuronal...
UK Engineering and Physical Sciences Research Council (EPSRC) (EP/P030017/1); European Union’s Horiz...
We present a minimally-invasive endoscope based on a multimode fiber that combines photoacoustic and...
Fluorescence microscopy has emerged as a pivotal platform for imaging in the life sciences. In recen...
We report a technologically novel microscopy system for bioimaging based on a 100 fs titanium:sapphi...
Fluorescence microscopy has emerged as a pivotal platform for imaging in the life sciences. In recen...
Photoacoustic (PA) endoscopy has shown significant potential for clinical diagnosis and surgical gui...
International audienceCoherent Raman scattering microscopy is a fast, label-free, and chemically spe...
Microendoscopes based on optical fibres have recently come to the fore as promising candidates allow...
Nonlinear optical endoscopy is an attractive technique for biomedical imaging since it promises to g...
Endoscopy is a key technology for minimally-invasive optical access to deep tissues in humans and li...
International audienceWe demonstrate a 2 mm diameter highly multimodal nonlinear micro-endoscope all...
Raman spectroscopy is a valuable tool for non-invasive and label-free identification of sample chemi...
International audienceWe demonstrate a 2 mm diameter highly multimodal nonlinear micro-endoscope all...
Progress in neuroscience relies on new techniques for investigating the complex dynamics of neuronal...
UK Engineering and Physical Sciences Research Council (EPSRC) (EP/P030017/1); European Union’s Horiz...
We present a minimally-invasive endoscope based on a multimode fiber that combines photoacoustic and...
Fluorescence microscopy has emerged as a pivotal platform for imaging in the life sciences. In recen...
We report a technologically novel microscopy system for bioimaging based on a 100 fs titanium:sapphi...
Fluorescence microscopy has emerged as a pivotal platform for imaging in the life sciences. In recen...
Photoacoustic (PA) endoscopy has shown significant potential for clinical diagnosis and surgical gui...
International audienceCoherent Raman scattering microscopy is a fast, label-free, and chemically spe...
Microendoscopes based on optical fibres have recently come to the fore as promising candidates allow...