Researchers at the University of Jyväskylä have developed an imaging device for schools and research centers to study microbes. The 3D-printed device "NIRis" enables schools to observe and study ...
Understanding complex biological and biomedical systems is greatly aided by 3D imaging, which provides much more detailed information than traditional two-dimensional methods. However, live cell and ...
Recent developments in 3D printing materials allow for better simulation of human anatomy, not only in shape but also in how tissues appear in medical imaging such as X-rays and CT scans. RadioMatrix, ...
A team of researchers has developed an innovative imaging platform that promises to improve our understanding of cellular structures at the nanoscale. This platform, called soTILT3D for ...
Fig. 1 Schematic illustration of the DFAMFPP principle: Multiple dual-frequency fringe patterns are overlaid in a single long-exposure image. A deep neural network then reconstructs time-resolved 3D ...
Researchers have developed a new catheter-based device that combines two powerful optical techniques to image the dangerous plaques that can build up inside the arteries that supply blood to the heart ...
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New HySIL lens design makes high-resolution 3D brain and cancer imaging widely accessible
A Columbia University-led team has developed a revolutionary microscopy technology that could dramatically advance 3D tissue imaging while slashing costs and complexity. The work, led by Professor ...
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