Wide-field fluorescence imaging is an indispensable tool for studying large-scale biodynamics. Limited space-bandwidth product and strong light diffusion make conventional implementations incapable of high-resolution mapping of fluorescence biodistribution in three dimensions. We introduce a volumetric wide-field fluorescence microscopy based on optical astigmatism combined with fluorescence source localization, covering 5.6×5.6×0.6 mm3 imaging volume. Two alternative configurations are proposed exploiting multifocal illumination or sparse localization of point emitters, which are herein seamlessly integrated in one system. We demonstrate real-time volumetric mapping of the murine cortical microcirculation at capillary resolution without em...
Full-field optical coherence microscopy (FFOCM) is a high-resolution interferometric technique that ...
AbstractDespite widespread applications of multiphoton microscopy in microcirculation, its small fie...
Two-photon laser-scanning microscopy has revolutionized our view on vital processes by revealing mot...
Wide-field fluorescence imaging is an indispensable tool for studying large-scale biodynamics. Limit...
Scanning optical microscopy techniques are commonly restricted to a sub‐millimeter field‐of‐view (FO...
Scanning optical microscopy techniques are commonly restricted to a sub-millimeter field-of-view (FO...
Rapid development of genetically encoded fluorescent indicators has provided a diverse chemical tool...
Fast volumetric microscopy is required to monitor large-scale neural ensembles with high spatio-temp...
The occurrence and development of ischemic stroke are closely related to cerebral blood flow. Real‐t...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
The distinct organization of the brain’s vascular network ensures that it is adequately supplied wit...
Traditional in vivo optical imaging methods rely on a single contrast mechanism, thereby limiting on...
Functional magnetic resonance (fMRI) imaging is the current gold-standard in neuroimaging. fMRI expl...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
Brain connectivity spans over broad spatial scales, from nanometers to centimeters. In order to unde...
Full-field optical coherence microscopy (FFOCM) is a high-resolution interferometric technique that ...
AbstractDespite widespread applications of multiphoton microscopy in microcirculation, its small fie...
Two-photon laser-scanning microscopy has revolutionized our view on vital processes by revealing mot...
Wide-field fluorescence imaging is an indispensable tool for studying large-scale biodynamics. Limit...
Scanning optical microscopy techniques are commonly restricted to a sub‐millimeter field‐of‐view (FO...
Scanning optical microscopy techniques are commonly restricted to a sub-millimeter field-of-view (FO...
Rapid development of genetically encoded fluorescent indicators has provided a diverse chemical tool...
Fast volumetric microscopy is required to monitor large-scale neural ensembles with high spatio-temp...
The occurrence and development of ischemic stroke are closely related to cerebral blood flow. Real‐t...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
The distinct organization of the brain’s vascular network ensures that it is adequately supplied wit...
Traditional in vivo optical imaging methods rely on a single contrast mechanism, thereby limiting on...
Functional magnetic resonance (fMRI) imaging is the current gold-standard in neuroimaging. fMRI expl...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
Brain connectivity spans over broad spatial scales, from nanometers to centimeters. In order to unde...
Full-field optical coherence microscopy (FFOCM) is a high-resolution interferometric technique that ...
AbstractDespite widespread applications of multiphoton microscopy in microcirculation, its small fie...
Two-photon laser-scanning microscopy has revolutionized our view on vital processes by revealing mot...