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New 3D microscope technology captures high-resolution tissue images at a fraction of the cost
A team led by Raju Tomer, professor of biological sciences at Columbia University, has created a new design for microscopes ...
Deep inside a small, windowless room at the University of California, Berkeley, two microscopes are quietly capturing some of ...
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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 ...
In a study published in Science Advances, a research team led by Prof. Liu Chengbo from the Shenzhen Institutes of Advanced Technology (SIAT) of the Chinese Academy of Sciences developed a 1.7-gram ...
Metalenses represent a revolutionary advancement in optical technology. Unlike conventional microscope objectives that rely on curved glass surfaces, metalenses employ nanoscale structures to ...
In-vivo imaging of the neuronal activity in mouse primary visual cortex. Left, high-resolution neuronal map; middle, high-speed neuronal activity recording captured by the two-photon microscope with ...
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 ...
University researchers have developed a high-resolution microscope that is small enough to sit on a computer chip. The tiny microscope has the magnifying power of a top-quality optical microscope and ...
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.
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