Tech Xplore on MSN
Programmable 3D-printed filaments mimic artificial muscles with heat-driven bending and twisting
Nature is replete with slender filaments that bend and coil—from climbing grape vines, to folded proteins, to elephant trunks that can pick up a peanut but also take down a tree.
For centuries, the inability to regrow lost body parts has been considered a defining limitation of humans and other mammals. While animals like salamanders can regenerate entire limbs, humans are ...
Researchers at Kyushu University and Institute of Science Tokyo have developed a new computational model that can simulate the transport of oxygen by red blood cells (RBCs) through tiny blood ...
New research has shown that single blood vessel cells that appear in the earliest stages of lab-grown skin organoids have the ...
Advanced biomaterials play a central role in the development of functional platforms for biomedical repair and regeneration. A wide range of material ...
In this webinar, our speaker will explore a series of practical, chromatography-focused strategies designed to enhance mAb purification performance while reducing cost of goods (COGs).
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