Until today, skin, brain, and all tissues of the human body were difficult to observe in detail with an optical microscope, since the contrast in the image was hindered by the high density of their ...
Left: wide-field second harmonic generation intensity measurement of a murine muscle slice, where the structure is visible but distorted by out-of-focus light. Right: harmonic optical tomography ...
Researchers have developed a new method for rapid 3D imaging. Instead of having to scan repeatedly in 2D, the researchers proposed a one-scan technique that uses a light needle to process at depth and ...
A pollen grain showing the nanofoam within or a diatom with the individual geometric structures inside clearly visible: Using high-energy X-rays from the PETRA III synchrotron light source at DESY, a ...
Current issues are available on the Chicago Journals website: Read the latest issue.Originally published by the Marine Biological Laboratory, The Biological Bulletin seeks to disseminate novel ...
The Polish-Israeli team from the Faculty of Physics of the University of Warsaw and the Weizmann Institute of Science has made another significant achievement in fluorescent microscopy. In the pages ...
HKU Biomedical Engineering develops novel 3D imaging technology to make fluorescence microscopy more efficient and push the boundaries of living cells research Scientists have been using fluorescence ...
Constructed with precision optical lenses, high-quality materials, a variety of illumination choices and a trinocular eyepiece tube, Celestron Labs has created a promising instrument for advanced ...
The Evident BX53-P polarizing microscope provides superb performance in polarized light applications using the combination of UIS2 infinity-corrected optics and a unique optical design. An extended ...
From left to right: a pollen grain collected at DESY, a diatom, and a cyanobacterium, all imaged using Compton X-ray Scattering Microscopy at PETRA III. These micrographs, which reach up to 70 ...
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