New in @ScienceMagazine! Untethering soft robots from electrical or pneumatic power remains a prominent challenge in the field due to the weight of conventional soft robotic actuators.
https://t.co/SfuWsYlrcY
1/5
As part of the @WellcomeLeap initiative, @snbhatia , Chris Chen, Dave Mooney, & @JenniferALewis1 are developing solutions to the organ donor shortage & creating drug testing platforms. Learn about Bhatia & Chen's work ⬇️, or see more➡️ #WellcomeLeap https://t.co/BSbgi6rldo
Review|Emily Flam and Zolt Arany review the current knowledge of how signaling intermediate #metabolites affect the #heart in health and disease , @zoltarany@AranyLab, @PennCVI |https://t.co/1gXZtdOae0
👉https://t.co/9YTzIIYr92
We are thrilled to announce our latest publication, out today @NatureComms. Congrats to first author @AndreaBAlber and thanks to all our collaborators and all the teams @CReM_Boston @BUPulmonary! Got mesenchyme!
https://t.co/UzYsn9Y4iC
2D in vitro systems that confine macrophages to small areas modulate their responses to known inflammatory agents, but how exactly this was happening remained unclear until now.
@seguralab@DukeU
Read the study to find out: https://t.co/XGZa2jwJFk
We are #hiring at Singapore University of Technology and Design (SUTD). Looking for a few #PhD and fresh #postdocs in the field of (1) microfluidics & vascular engineering and (2) direct ink writing 3D printing for novel fabrication. Please contact if interested!
I am so proud of our Robotics Subgroup! Pranav, Francesco and James are leading awesome work in our lab @NorthwesternEng, and we’re thrilled their walking soft robot is featured on the current cover of @softmatter!
Terry (@terrychingg)'s recent paper in collaboration with Yi-Chin's group (@MicroTElab) is featured as the cover of Small. Congratulations everyone in the team!
We made 3D and branched vascular structures using 3D-printed porous molds. Please check out: https://t.co/fSJTuGyALY
This freestanding, durable vascular model is made from a cell laden hydrogel that was molded using a microfluidics enabled technique combined with coaxial bioprinting.
@terrychingg@SoftFluidics@sutdsg @MicroTElab
👉 https://t.co/qzRSYjMmwd