Over the last two decades, microscopy has seen unprecedented advances in speed and resolution. However, cellular structures are essentially three-dimensional, and conventional super-resolution ...
Researchers have developed a new microscopy technique that can acquire 3D super-resolution images of subcellular structures from about 100 microns deep inside biological tissue, including the brain.
Wouldn't it be amazing if printed images can look three-dimensional (3D)? Unfortunately, conventional prints like photographs display two-dimensional (2D) images with a fixed appearance as they ...
With the development of an innovative 3D super-resolution microscopic method, a better understanding of previously unresolved environments is now possible. Researchers have been able to image entire ...
Due to the inherent anisotropy of the optical PSF, the HR lateral images naturally serve as the rational gold standard for enhancing the axial resolution of the raw data. The unpaired lateral and ...
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