Optical imaging underpins advances across medicine, life sciences, manufacturing, and beyond. Yet, many imaging systems still depend on complex, impractical or costly implementation, creating barriers ...
Professor Iksung Kang, KAIST >Observing the depths of a living brain with clarity has traditionally required expensive, high-end equipment. However ...
Combining hyperspectral imaging and AI, this research identifies oxidative stress in red blood cells, paving the way for ...
Researchers from KAIST and UC Berkeley have developed a neural network-based method to correct optical distortions in deep tissue microscopy without additional hardware. The system uses Neural Fields ...
A cross-disciplinary team led by Prof. Qu Jianan from the Department of Electronic and Computer Engineering and Prof. Julie L ...
MIT scientists have engineered a revolutionary brain imaging tool, converting chaotic laser light into a focused beam. This ...
The iSFR model enables accurate non-contact tissue analysis, achieving a 6.2% prediction error and overcoming limitations of ...
(Yicai) April 23 -- Scientists from China and Singapore have developed a new printing technique for multiscale optical ...