Endocytoscopy is an optical biopsy technique which uses a miniaturized camera to capture white light microscopy images through an endoscope. We have developed an alternative design that instead relays images to an external camera via a coherent fiber bundle. In this paper we characterize the device and demonstrate microscopy of porcine tissue ex vivo. One advantage of our approach is the ease with which other bundle-compatible imaging modalities can be deployed simultaneously. We show this by acquiring quasi-simultaneous endocytoscopy and fluorescence confocal endomicroscopy images through a single fiber bundle. This opens up possibilities for multi-modal endomicroscopy, combining white light and fluorescence imaging
Multiphoton microscopy has the potential to be a versatile tool for clinical disease diagnosis and t...
Existing optic fibre-bundle based imaging probes have been successfully used to image biological sig...
Confocal microendoscopy provides real-time high resolution cellular level images via a minimally inv...
Coherent fiber imaging bundles can be used as passive probes for reflectance-mode endomicroscopy pro...
Commercial endomicroscopes operate in fluorescence mode only and so require the application of contr...
In this paper a novel single-pixel method for coherent imaging through an endoscopic fiber bundle is...
Currently, endoscopic surgery uses single-mode fiber-bundles to obtain in vivo image information ins...
In this paper, a novel single-pixel method for coherent imaging through an endoscopic fiber bundle i...
Endoscopy is a key technology for minimally-invasive optical access to deep tissues in humans and li...
High-resolution imaging techniques have become important for the determination of the cellular organ...
Since its inception in the field of in vivo imaging, endomicroscopy through optical fiber bundles, o...
In order to diagnose cancer, a sample must be removed, prepared, and examined under a microscope, wh...
We demonstrate in vivo endoscopic optical coherence tomography (OCT) imaging in the forward directio...
Fiber bundle fluorescence endomicroscopy is an effective method for in vivo imaging of biological ti...
BACKGROUND: This report describes the development and the clinical evaluation of a novel confocal en...
Multiphoton microscopy has the potential to be a versatile tool for clinical disease diagnosis and t...
Existing optic fibre-bundle based imaging probes have been successfully used to image biological sig...
Confocal microendoscopy provides real-time high resolution cellular level images via a minimally inv...
Coherent fiber imaging bundles can be used as passive probes for reflectance-mode endomicroscopy pro...
Commercial endomicroscopes operate in fluorescence mode only and so require the application of contr...
In this paper a novel single-pixel method for coherent imaging through an endoscopic fiber bundle is...
Currently, endoscopic surgery uses single-mode fiber-bundles to obtain in vivo image information ins...
In this paper, a novel single-pixel method for coherent imaging through an endoscopic fiber bundle i...
Endoscopy is a key technology for minimally-invasive optical access to deep tissues in humans and li...
High-resolution imaging techniques have become important for the determination of the cellular organ...
Since its inception in the field of in vivo imaging, endomicroscopy through optical fiber bundles, o...
In order to diagnose cancer, a sample must be removed, prepared, and examined under a microscope, wh...
We demonstrate in vivo endoscopic optical coherence tomography (OCT) imaging in the forward directio...
Fiber bundle fluorescence endomicroscopy is an effective method for in vivo imaging of biological ti...
BACKGROUND: This report describes the development and the clinical evaluation of a novel confocal en...
Multiphoton microscopy has the potential to be a versatile tool for clinical disease diagnosis and t...
Existing optic fibre-bundle based imaging probes have been successfully used to image biological sig...
Confocal microendoscopy provides real-time high resolution cellular level images via a minimally inv...