Fluorescence microscopy images usually show severe anisotropy in axial versus lateral resolution. This hampers downstream processing, i.e. the automatic extraction of quantitative biological data. While deconvolution methods and other techniques to address this problem exist, they are either time consuming to apply or limited in their ability to remove anisotropy. We propose a method to recover isotropic resolution from readily acquired anisotropic data. We achieve this using a convolutional neural network that is trained end-to-end from the same anisotropic body of data we later apply the network to. The network effectively learns to restore the full isotropic resolution by restoring the image under a trained, sample specific image prior. ...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Four-dimensional fluorescence microscopy--which records 3D image information as a function of time--...
Abstract One intrinsic yet critical issue that troubles the field of fluorescence microscopy ever si...
Volumetric imaging by fluorescence microscopy is often limited by anisotropic spatial resolution, in...
Dataset for a research paper titled "Deep learning enables reference-free isotropic super-resolution...
The quality of microscopy images often suffers from optical aberrations. These aberrations and their...
Four-dimensional fluorescence microscopy-which records 3D image information as a function of time-pr...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Fluorescence microscopy is an essential tool for imaging subcellular structures in tissue. Two-photo...
Four-dimensional fluorescence microscopy-which records 3D image information as a function of time-pr...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Fluorescence microscopy is an essential tool for imaging subcellular structures in tissue. Two-photo...
Four-dimensional fluorescence microscopy--which records 3D image information as a function of time--...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Four-dimensional fluorescence microscopy--which records 3D image information as a function of time--...
Abstract One intrinsic yet critical issue that troubles the field of fluorescence microscopy ever si...
Volumetric imaging by fluorescence microscopy is often limited by anisotropic spatial resolution, in...
Dataset for a research paper titled "Deep learning enables reference-free isotropic super-resolution...
The quality of microscopy images often suffers from optical aberrations. These aberrations and their...
Four-dimensional fluorescence microscopy-which records 3D image information as a function of time-pr...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Fluorescence microscopy is an essential tool for imaging subcellular structures in tissue. Two-photo...
Four-dimensional fluorescence microscopy-which records 3D image information as a function of time-pr...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Fluorescence microscopy is an essential tool for imaging subcellular structures in tissue. Two-photo...
Four-dimensional fluorescence microscopy--which records 3D image information as a function of time--...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Fluorescence microscopy is a key driver of discoveries in the life sciences, with observable phenome...
Four-dimensional fluorescence microscopy--which records 3D image information as a function of time--...