Detailed understanding of the adaptive nature of cardiac cells in health and disease requires investigation of proteins and membranes in their native physiological environment, ideally by noninvasive optical methods. However, conventional light microscopy does not resolve the spatial characteristics of small fluorescently labeled protein or membrane structures in cells. Due to diffraction limiting resolution to half the wavelength of light, adjacent fluorescent molecules spaced at less than ~ 250 nm are not separately visualized. This fundamental problem has lead to a rapidly growing area of research, superresolution fluorescence microscopy, also called nanoscopy. We discuss pioneering applications of superresolution microscopy relevant to ...
Cardiac multiscale bioimaging is an emerging field that aims to provide a comprehensive understandin...
ABSTRACT Near-field scanning optical microscopy (NSOM) has been used to study the nanoscale distribu...
Nanometre-scale cellular information obtained through super-resolution microscopies are often unacco...
AbstractDetailed understanding of the adaptive nature of cardiac cells in health and disease require...
Detailed understanding of the adaptive nature of cardiac cells in health and disease requires invest...
Remodelling of the membranes and protein clustering patterns during the pathogenesis of cardiomyopat...
Nanodomains are naturally assembled signaling stations, which facilitate fast and highly regulated s...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Nanodomains are naturally assembled signaling stations, which facilitate fast and highly regulated s...
AbstractNear-field scanning optical microscopy (NSOM) has been used to study the nanoscale distribut...
Several super-resolution techniques have been developed over the recent years, offering sub-nanometr...
Near-field scanning optical microscopy (NSOM) has been used to study the nanoscale distribution of v...
Nanoscale resolution scanning ion conductance microscopy (SICM) is now at the forefront of imaging t...
Remodelling of the membranes and protein clustering patterns during the pathogenesis of cardiomyopat...
Cardiac multiscale bioimaging is an emerging field that aims to provide a comprehensive understandin...
ABSTRACT Near-field scanning optical microscopy (NSOM) has been used to study the nanoscale distribu...
Nanometre-scale cellular information obtained through super-resolution microscopies are often unacco...
AbstractDetailed understanding of the adaptive nature of cardiac cells in health and disease require...
Detailed understanding of the adaptive nature of cardiac cells in health and disease requires invest...
Remodelling of the membranes and protein clustering patterns during the pathogenesis of cardiomyopat...
Nanodomains are naturally assembled signaling stations, which facilitate fast and highly regulated s...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Nanodomains are naturally assembled signaling stations, which facilitate fast and highly regulated s...
AbstractNear-field scanning optical microscopy (NSOM) has been used to study the nanoscale distribut...
Several super-resolution techniques have been developed over the recent years, offering sub-nanometr...
Near-field scanning optical microscopy (NSOM) has been used to study the nanoscale distribution of v...
Nanoscale resolution scanning ion conductance microscopy (SICM) is now at the forefront of imaging t...
Remodelling of the membranes and protein clustering patterns during the pathogenesis of cardiomyopat...
Cardiac multiscale bioimaging is an emerging field that aims to provide a comprehensive understandin...
ABSTRACT Near-field scanning optical microscopy (NSOM) has been used to study the nanoscale distribu...
Nanometre-scale cellular information obtained through super-resolution microscopies are often unacco...