final grad school paper is finally out!
Cellular micromasonry: biofabrication with single cell precision - now published in Soft Matter https://t.co/9GWgyYwGWL
Bioprinting systems can't build intricate multicellular #3D structures in a cell-by-cell manner. @uflmae & @UFHealth#researcher developed a bioprinting system that builds intricate #3D structures. The #GatorMade#technology is available for #licensing! https://t.co/uFG8Ajs5JQ
#NationalInventorsMonth
Drs. Schmidt & Angelini, @uflmae & @UFBME, created a #3D printed model that mimics spinal cord injuries. Researchers can determine injury progression & find a cure. Learn more about our #UFInventors & their #GatorMade technology! https://t.co/yrDK9IGvkL
Researchers in the Martindale Lab @Whitney_Lab worked in collaboration with the Herbert Wertheim College of Engineering to investigate the ctenophore, or comb jelly, as a system to study wound healing and regeneration.
https://t.co/BFJIEqPJzr
Check out the Behind the Paper story for this exciting new report on self-reconfiguring biomaterials from my @UF colleagues, Tommy Angelini @uflmae, @Brent_Sumerlin and others
https://t.co/YidFWgQuDI
Interested in 3D printing tumors? Converting cancer cells into immune cells? @ACTScience come check out our (@TEllison0509 ) TL1 approach to high throughput testing of novel therapies for glioblastoma. Poster: B81.