Bone and skeletal injuries cause extensive and long-term functional impairments worldwide. In a new study, researchers at ...
The adage 'Seeing is believing' was front of mind for Dr. Chih-Wei Logan Hsu and Dr. Joshua D. Wythe at Baylor College of Medicine as they and their colleagues developed an innovative technology ...
A classical way to image nanoscale structures in cells is with high-powered, expensive super-resolution microscopes. As an alternative, MIT researchers have developed a single-step technique for ...
Researchers developed a microfluidic chip with 3D-printed microstructures that moves droplets precisely, captures cells efficiently, and quickly forms cell spheroids for improved lab-grown tissue ...
Using their novel Freeform Reversible Embedding of Suspended Hydrogels (FRESH) 3D bioprinting technique, which allows for the printing of soft living cells and tissues, Carnegie Mellon's Feinberg lab ...
Scientists have developed a method to 3-D print cells to produce human tissue such as ligaments and tendons to greatly improve a patient's recovery. A person with a badly damaged ligament, tendon, or ...
Group Manager Micro and Biosystems Engineering Dr. rer. medic. Florian Schmieder | Fraunhofer Institute for Material and Beam Technology IWS Dresden | Phone +49 351 83391-3520 | Winterbergstraße 28 | ...