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This technique, called volumetric DNA microscopy, creates a 3D image of an entire organism from the inside out, giving scientists an unprecedented view of genetic sequences and where they are located, ...
Three-dimensional (3D) imaging is essential for investigating cellular structure and dynamics. Traditional optical methods ...
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For high-resolution imaging, a 60x 1.42 NA Olympus oil immersion (oil RI = 1.516-1.520) objective was used. 3D fluorescence images were deconvolved using the manufacturer-provided software (SoftWoRx 7 ...
The stunning preservation and high-quality 3D images enabled scientists to observe parts of trilobites that had never been seen before, such as mouth structures of Protolenus (Hupeolenus) sp ...
The openVertebrate project is a significant milestone for natural history museums, researchers, educators, students, and the public, creating the first digital library to offer free access to ...
Since the first medical X-ray radiograph in 1896, tomographic imaging techniques have extended our understanding of the geometry, density, phase composition, and physical processes inside a ...
For the generation of synthetic light-sheet (fluorescence) microscopy data we rely on the Biobeam package [6] which allows us to simulate the propagation of light through 3D space given a refractive ...
Multishelled Cu@Si@Cu microparticles supported on 3D Cu current collectors were further prepared as stable and binder-free LIB anodes. This 3D Cu@Si@Cu structure allows the interior conductive Cu ...
The findings have been published in Sensors and Actuators A: Physical ("Acoustic 3D trapping of microparticles in flowing liquid using circular cavity"). Schematic diagram of the chip design and its ...