Scientists categorize most imaging methods into two major types: label-free and fluorescence microscopy. However, these techniques do not exist in isolation, as the majority of fluorescence ...
The beauty of live-imaging studies is the specimen is alive, allowing dynamics such as cell division and embryonic development to be recorded over time. Yet the frustration of live-imaging studies is ...
Researchers at the University of California, Irvine have developed a live-imaging system, Phollow, that tracks individual bacteriophages as they spread through the gut of zebrafish, showing that ...
Since the 1990s, Yokogawa has played a prominent role in the R&D of high-speed confocal microscopes for real-time imaging of living cells, and in 1996, launched its first product, the CSU10 confocal ...
Live cell imaging is a technique for studying living cells over time utilizing images captured by time-lapse microscopy. Celloger. Image Credit: Scintica Instrumentation Inc. Real-time imaging of ...
Neuroscientists distinguish brain regions based on what they do, but now have a new way to overlay information about how they are built, too. To understand the massive capabilities and complexities of ...
Making a living brain transparent and watching its neurons fire without disturbing their function—sounds like science fiction, doesn't it? Yet the solution may already exist within our own bodies. In ...
Live cell imaging is a powerful approach to visualizing the complex and dynamic mechanisms in cells and tissues. Technological advances in confocal microscopy allow researchers to explore this in real ...
Time-lapse microscopy is a powerful tool for monitoring phenotypic change, be it cell division, neurite outgrowth, cell migration, or apoptosis. The level of detail and spatio-temporal context this ...