Researchers have shown that consumer-grade 3D printers and low-cost materials can be used to produce multi-element optical ...
Interesting Engineering on MSN
Standard 3D printers enable super-resolution microscopy with custom optics under $1
Researchers have demonstrated that consumer-grade 3D printers and inexpensive materials can produce advanced optical ...
Microscopy continues to transform the life sciences. Here are five recent breakthroughs made possible by the technique.
Discover why the witec360 Raman microscope is considered the gold standard for correlative microscopy and nanoscale imaging.
A new two-photon fluorescence microscope developed at UC Davis can capture high-speed images of neural activity at cellular resolution thanks to a new adaptive sampling scheme and line illumination.
Understanding the behavior of the molecules and cells that make up our bodies is critical for the advancement of medicine. This has led to a continual push for clear images of what is happing beyond ...
Researchers devised a way to expand tissue 20-fold in a single step. Their simple, inexpensive method could pave the way for nearly any biology lab to perform nanoscale imaging. A classical way to ...
Confocal microscopy is a specialized fluorescence imaging technique that scientists use to acquire images at greater resolution than conventional microscopy. 1 In addition to scanning the lateral x ...
Metalenses represent a revolutionary advancement in optical technology. Unlike conventional microscope objectives that rely on curved glass surfaces, metalenses employ nanoscale structures to ...
The DeepInMiniMicroscope developed by UC Davis electrical engineering professor Weijian Yang combines optical technology and machine learning to create a device that can take high-resolution ...
Researchers have developed a new two-photon fluorescence microscope that captures high-speed images of neural activity at cellular resolution. By imaging much faster and with less harm to brain tissue ...
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