FTIR microscopy offers a strong method for detecting and characterizing contaminants, crucial for ensuring product safety and ...
When cell samples stained with these molecules are examined using two-photon microscopy, the molecules behave as if they were ...
Multiphoton microscopy is used in biomedical research to study cells and tissues. Today, so-called two-photon microscopy is used to study processes within cells, but the technique has limitations in ...
Stanford researchers have combined two microscopy techniques to create a one-of-a-kind instrument that can show cell ...
The brain relies on real-time delivery of oxygen and nutrients through its microvasculature, which threads through neural ...
Electron microscopy (EM) has become an indispensable tool for investigating the nanoscale structure of a large range of materials, across physical and life sciences. It is vital for characterisation ...
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Electron microscopy shows 'mouse bite' defects in semiconductors
Cornell researchers have used high-resolution 3D imaging to detect, for the first time, the atomic-scale defects in computer chips that can sabotage their performance. The imaging method, which was ...
Cornell researchers have used advanced electron microscopy to identify "mouse bite" defects in 3D transistors for the first time ...
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Multicolor electron microscopy reveals proteins and cell architecture at nanoscale resolution
Scientists have developed a new imaging technique that uses a novel contrast mechanism in bioimaging to merge the strengths of two powerful microscopy methods, allowing researchers to see both the ...
An AI-powered toolkit automatically extracts and quantifies microstructural features from microscopy images, accelerating ...
Brandon Reagan, a postdoctoral researcher at Michigan State University, explores the relationship between the endoplasmic reticulum and plant stress responses.
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