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Researchers Develop Promising Approach To Smaller, More Powerful, Safer Electric Vehicle Batteries

Researchers Develop Promising Approach To Smaller, More Powerful, Safer Electric Vehicle Batteries
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Jennifer Rupp , Angewandte Chemie , Massachusetts Institute Of Technology , Us National Science Foundation , Us Department Of Energy , Technical University Of Munich , National Nanotechnology Coordinated Infrastructure Network , National Science Foundation , Massachusetts Institute , Technical University , Science Foundation , National Science , Cleantech Talk ,

Fiber-infused ink enables 3D-printed heart muscle to beat

This illustration shows a 3D printed heart ventricle engineered with fiber-infused ink. Credit: Harvard SEAS By Kat J. McAlpine / SEAS Communications Over the last decade, advances in 3D printing have unlocked new possibilities for bioengineers to build heart tissues and structures. Their goals include creating better in vitro platforms for discovering new therapeutics for heart disease, the leading cause of death in the United States, responsible for about one in every five deaths nationally, and using 3D-printed cardiac tissues to evaluate which treatments might work best in individual patients. A more distant aim is to fabricate implantable tissues that can heal or replace faulty or diseased structures inside a patient's heart. In a paper published in Nature Materials, researchers from Harvard John A. Paulson School of Engineering and Applied Sciences (SEAS) and the Wyss Institute for Biologically Inspired Engineering at Harvard University report the development of a new hydrog ....

United States , Johnf Zimmerman , Yong Lee , Andreasr Bausch , Lukea Macqueen , Wyss Lumineer Luke Macqueen , Xujie Liu , Qianru Jin , Seanl Kim , Andreas Bausch , Michaelm Peters , Williamt Pu , Katj Mcalpine , Huibin Chang , Herdeline Ann , Collin Richardson , Ann Caroline Heiler , Suji Choi , Rudy Gabardi , Translational Sciences , Harvard Johna Paulson School Of Engineering , Harvard University Materials Research Science , National Center , Harvard University Center , National Nanotechnology Coordinated Infrastructure Network , National Science Foundation ,

Fiber-infused ink enables 3D-printed heart mu

Researchers from the Harvard John A. Paulson School of Engineering and Applied Sciences (SEAS) report the development of a new hydrogel ink infused with gelatin fibers that enables 3D printing of a functional heart ventricle that mimics beating like a human heart. They discovered the fiber-infused gel (FIG) ink allows heart muscle cells printed in the shape of a ventricle to align and beat in coordination like a human heart chamber. ....

United States , Yong Lee , Collin Richardson , Suji Choi , Ann Caroline Heiler , Seanl Kim , Herdeline Ann , Rudy Gabardi , Michaelm Peters , Andreas Bausch , Huibin Chang , Qianru Jin , Williamt Pu , Johnf Zimmerman , Luke Macqueen , Xujie Liu , Disease Biophysics Group , National Science Foundation , Translational Sciences , National Institutes Of Health , Harvard University Center , Harvard University Materials Research Science , Engineering Center , National Center , National Nanotechnology Coordinated Infrastructure Network , Harvard Johna Paulson School Of Engineering ,