Researchers at the University of Tokyo have built a microscope that can detect a signal over an intensity range 14 times ...
In a study published in Science Advances, a team of UC Davis researchers tracked the movement of fluorescent particles inside the cells of microscopic worms, providing unprecedented insights into ...
Scientists have uncovered new details about the mechanism behind cancer progression. Researchers explored the influence the mechanical stiffening of the tumor cell's environment may have on the ...
In a lab in the heart of Boston, professor Bree Aldridge leads a team of researchers trying to understand a threat that is both microscopic in size and global in consequence. The subject of Aldridge’s ...
Interesting Engineering on MSN
Dual-light microscope captures micro detail and nano motion with 14x expanded range
Microscopy has advanced significantly over the centuries, but modern tools still face trade-offs. Quantitative phase ...
Researchers at Helmholtz Munich and the Technical University of Munich have developed a new microscope that significantly improves how bioluminescent signals in living cells can be observed. The ...
A toxic protein forms dynamic pores in the membranes of brain cells—and that may be the key to understanding how Parkinson's disease develops. This is the conclusion of a new study from Aarhus ...
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