3D imaging technology developed by Irish company XYZ Reality is being used to speed up construction of a massive new "hyperscale" data centre in Denmark. Construction giant PM Group is currently using ...
Scientists have been using fluorescence microscopy to study the inner workings of biological cells and organisms for decades. However, many of these platforms are often too slow to follow the ...
We are conducting research of “light-reproduction three-dimensional (3D) image-display technology,” which enables the natural viewing of 3D images with the naked eye, as part of our efforts to realize ...
The development of India’s first indigenous Quantum Diamond Microscope by IIT Bombay’s P-Quest group marks a significant milestone in the country’s quantum-technology journey.
Researchers in South Korea have developed a technology that allows for vivid 3D imaging of cancer tissues without the need for cutting or staining. A research team led by Professor Park Yong-geun from ...
In a landmark advancement for India’s quantum technology ecosystem, researchers at IIT Bombay’s P-Quest Group have developed the nation’s first indigenous Quantum Diamond Microscope (QDM), a precision ...
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3D imaging system reveals fine architecture of peripheral nervous systems in mouse body
A team has made a major breakthrough in the field of three-dimensional (3D) imaging of large-scale biological tissues. They developed the world's fastest high-definition 3D imaging technology for the ...
Focusing on a new viewing experience with “immersive media,” we are pursuing research and development on a three-dimensional (3D) image display. To generate 3D images that can be viewed naturally with ...
When it comes to 3D technology solutions in the medical sector, we might first think about 3D printing. But, in a more fashion-conscious branch of the medical sector, the plastic surgery industry, 3D ...
This application note demonstrates how next-generation confocal imaging technology combined with AI-powered analysis tools enables researchers to capture high-quality images from 3D organoids.
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