In this article, the researchers introduce AO-FIDT, a novel long-term, high-spatiotemporal-resolution 3D fluorescence and intensity diffraction tomography microscopy technique. This method employs an ...
Optical diffraction tomography (ODT) has long been recognized for its potential in non-invasive, label-free imaging of live biological cells. However, a major challenge arises when ODT is applied to ...
Understanding how rocks break in the brittle upper crust is critical for predicting earthquakes, managing reservoirs, and modeling subsurface mechanics. In JGR: Solid Earth, two new studies by Jacob ...
Grain boundaries are dominant imperfections in nanocrystalline materials that form a complex 3-dimensional (3D) network. Solute segregation to grain boundaries is strongly coupled to the grain ...
Because of the neutron’s special properties, neutron diffraction may be considered one of the most powerful techniques for structure determination of crystalline and related matter. Neutrons can be ...
Vincent van Gogh’s reds have been turning white, but the exact reason why has remained unclear. Research published last month out of Belgium has identified a rare lead mineral in his paint as the ...
Steel, used in many industrial sectors, is in great demand due to its specific mechanical and metallurgical properties. Imaging techniques like X-ray Diffraction (XRD), optical microscopy, and ...
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For years, capturing detailed three-dimensional images of complex biological specimens has posed a major challenge due to their intricate composition and the multiple scattering of light. A ...
Abstract: Diffraction tomography (DT) is a linear approach to solving electromagnetic inverse scattering problems. Based on the weak scattering assumptions (such as Born or Rytov approximations), the ...