3/...The final two presentations of yesterday's third session were provided by Prajwal Agrawal
(@PrajwalSAgrawal) from @ETH_en on #SONOPRINT, an acoustic-assisted volumetric 3D (Bio)Printer, and from Melika Babaei from @UniTrento on porosity's role in scaffold biocompatibility.
Prof. Zadpoor was one of four speakers to present as part of #WAB2024's Smart Designs & Metamaterials session, which also featured IMDEA Materials' own Dr. Jennifer Patterson, as well as Prajwal Agrawal from @ETH_en and Melika Babaei, co-founder of Adli Tissue Regeneration Inc.
Enhancing the properties of 3D-printed objects involves fine-tuning their structures.
To do this better, researchers turned to sound to trap and pattern microparticles within 3D composite structures.
@PrajwalSAgrawal@DanielAhmedARSL@ETH_en
๐ https://t.co/U6c0ckljAn
Out today, SonoPrint! Now customize the strength of 3D structures in minutes, revolutionizing composite fabrication, biohybrid robots & tissue engineering.
Thanks to @DanielAhmedARSL @AdvSciNews @ETH_en@eth_dmavt@snsf_ch @Innosuisse @ERC_Research
https://t.co/7uRmGhbrc3
Imagine a future where we explore the internal world of zebrafish embryos with unprecedented clarity. We've developed a technique using acoustic manipulation to rotate these embryos, allowing for their detailed 3D reconstructions.
https://t.co/RyoTY0oAD8
#ZebrafishResearch
In our new publication, we proposed a capillary acoustofluidic rotation system that offers rapid trapping, high-speed rotation, multi-angle imaging, and 3D model reconstruction of zebrafish larvae. https://t.co/sqO1vvawnOโฆ
@DanielAhmedARSL@PrajwalSAgrawal@eth_dmavt@LabonaChip
Ever since I joined @DanielAhmedARSL's lab, we have been exploring ways to manipulate composite properties using additive manufacturing and sound energy.
Here we introduce SonoPrint: An acoustic (sound) assisted volumetric 3D printer for composites.
https://t.co/Ycn8ovjFRM
I am delighted to be a part of @BRIDGE_funding Proof of Concept funding. Looking forward to developing the project in cooperation with Prof. @DanielAhmedARSL. I am pleased to thank the ARSL additive manufacturing team, @Innosuisse, @snsf_ch@ETH_en@eth_dmavt for their support.
New Proof of Concept projects set to go! Each of these 10 young researchers receive up to CHF 130,000 in funding to implement their project.
https://t.co/8rfS7irJMk
BRIDGE: a joint programme by @Innosuisse and @snf_ch. #BridgePoC
In this book chapter published in @ElsevierConnect, an understanding of acoustic field techniques for cell characterization in health monitoring is provided.
https://t.co/NEy3DzlXgX
Health monitoring (HM) plays an essential role in diagnosing diseases at an early stage as well as in reducing clinical costs and human suffering. Check out the book chapter, Acoustic field techniques for cell characterization in health monitoring, to know more.
The interaction between 3D microstructures and acoustics has yet to be studied in propulsion. While still in their infancy, acoustic microrobots are becoming attractive. We present an acoustically driven helical microrobot. @eth_dmavt https://t.co/9bHegeqQrn
Please look at our preprint, where we show sound control of particles in mice's brain vessel. We are just at the beginning of this exciting field, and more cool results will follow soon. Thank you,
@AlexiaCFonseca_, @mohamad_elamki, and everyone involved
https://t.co/7VhCnptCdM