Due to low light emission of fluorescent samples, live fluorescence microscopy imposes a tradeoff between spatiotemporal resolution and signal-to-noise ratio. This can result in images and videos containing motion blur or Poisson-type shot noise, depending on the settings used during acquisition. Here, we propose an algorithm to simultaneously denoise and temporally super-resolve movies of repeating microscopic processes that is compatible with any conventional microscopy setup that can achieve imaging at a rate of at least twice that of the fundamental frequency of the process (above 4 frames per second for a 2 Hz process). Our method combines low temporal resolution frames from multiple cycles of a repeating process to reconstruct a denoi...
Time-gated detection, namely, only collecting the fluorescence photons after a time-delay from the e...
Fluorescence laser-scanning microscopy is a well-established imaging technique in biology, available...
We present the results of super-resolution deconvolution of fluorescent intracellular images using t...
Light microscopy is a tool of paramount importance for biologists and has been constantly improved f...
Fluorescence imaging is often used to monitor dynamic cellular functions under conditions of very lo...
Optical microscopy is an essential tool for biological research, as it allows for non-invasive imagi...
AbstractSuperresolution microscopy techniques based on the sequential activation of fluorophores can...
Images of multiply labeled fluorescent samples provide unique insights into the localization of mole...
Superresolution fluorescence microscopy overcomes the diffraction resolution barrier and allows the ...
Limited time-resolution in microscopy is an obstacle to many biological studies. Despite recent adva...
Images of multiply labeled fluorescent samples provide unique insights into the localization of mole...
Capturing biological dynamics with high spatiotemporal resolution demands the advancement in imaging...
We introduce a imaging modality that works by transiently masking image-subregions during a single e...
Super-resolution fluorescence microscopy and its applications for analysis of biological structures ...
All fluorescence super-resolution microscopy techniques present trade-offs between, for example, res...
Time-gated detection, namely, only collecting the fluorescence photons after a time-delay from the e...
Fluorescence laser-scanning microscopy is a well-established imaging technique in biology, available...
We present the results of super-resolution deconvolution of fluorescent intracellular images using t...
Light microscopy is a tool of paramount importance for biologists and has been constantly improved f...
Fluorescence imaging is often used to monitor dynamic cellular functions under conditions of very lo...
Optical microscopy is an essential tool for biological research, as it allows for non-invasive imagi...
AbstractSuperresolution microscopy techniques based on the sequential activation of fluorophores can...
Images of multiply labeled fluorescent samples provide unique insights into the localization of mole...
Superresolution fluorescence microscopy overcomes the diffraction resolution barrier and allows the ...
Limited time-resolution in microscopy is an obstacle to many biological studies. Despite recent adva...
Images of multiply labeled fluorescent samples provide unique insights into the localization of mole...
Capturing biological dynamics with high spatiotemporal resolution demands the advancement in imaging...
We introduce a imaging modality that works by transiently masking image-subregions during a single e...
Super-resolution fluorescence microscopy and its applications for analysis of biological structures ...
All fluorescence super-resolution microscopy techniques present trade-offs between, for example, res...
Time-gated detection, namely, only collecting the fluorescence photons after a time-delay from the e...
Fluorescence laser-scanning microscopy is a well-established imaging technique in biology, available...
We present the results of super-resolution deconvolution of fluorescent intracellular images using t...