For more than 25 years, lab-on-a-chip technology has allowed researchers to model human organs and blood vessels using real ...
Using a non-traditional, micro-organism separation method, researchers at Rochester Institute of Technology discovered a faster technique that can be used to distinguish cells that are resistant to ...
University of Cincinnati engineers have created a new device to help doctors diagnose depression and anxiety. UC College of Engineering and Applied Science Distinguished Research Professor Chong Ahn ...
Researchers propose a novel system that uses standing surface acoustic waves to separate circulating tumor cells from red blood cells with unprecedented precision and efficiency. The platform ...
In a significant advancement for lab-on-chip technology, IBEC researchers in the frame of the European project BLOC, have demonstrated the first integration of a benchtop nuclear magnetic resonance ...
Engineers created a new point-of-care test that measures cortisol in saliva to help doctors diagnose depression and anxiety. University of Cincinnati engineers created a new device to help doctors ...
To better understand our cells and extracellular matrix—the 3D scaffolding that surrounds our cells—scientists apply different mechanical forces to simulate these microenvironments. A new study uses ...
Between microwaves and infrared light lies a region of the electromagnetic spectrum that researchers ...
Space exploration activity has been increasing. In turn, researchers are more interested than ever in uncovering more about how space travel affects human health and the progression of disease.
Organ-on-chip systems are microengineered devices that recreate key structural, mechanical, biochemical, and functional features of human organs in controlled laboratory platforms. They typically ...
SelectBIO's annual lab-on-a-chip and microfluidics congress, with a strong focus on point-of-care/rapid diagnostics and organs-on-chips. Co-located with the Extracellular Vesicles & LNPs and Space ...