Another important feature of this micropump is its ability to simultaneously filter the pumped-fluid eliminating particles larger than the smaller pore size of the diffuser array.
https://t.co/xrn61VTruY
Here is a fun little article that can provide you a low cost and useful micropump that we have just published in Microfluidics and Nanofluidics:
https://t.co/ovL5kr8Km5
Great read.
An automated and intelligent microfluidic platform for microalgae detection and monitoring - now published in Lab on a Chip https://t.co/an4mHub9vf
I am happy to share this book that we served as editors. It is a great resource if you are interested in acoustic technologies.
https://t.co/oyINMJnuMi
https://t.co/JALTxQCwvh
Very happy to share our new work on "SonoPrint: Acoustically Assisted Volumetric 3D Printing for Composites."
Congrats @PrajwalSAgrawal and all the authors! Anyone interested to colloborate on tissue constructs, please let us know. @eth_dmavt@ETH_en
https://t.co/NWtFij9yBu
Our recent work on "Continuous Flow Separation of Live and Dead Cells Using Gravity Sedimentation" A very simple approach to increase purity of cell solutions.
https://t.co/2Sx5IJxw6R #mdpimicromachines via @micromach_mdpi
New @acsnano paper 🚨 Microrobots offer potential for clinical use, but important challenges remain. We argue for a design-by-problem approach to advance this field. Thanks @ChenXD_NTU_Sg for the invitation and @PackardFdn for support! https://t.co/oLua44As47
.@FrankFengGuo@IULuddy and colleagues present active acoustic metamaterials-driven transdermal drug delivery for the treatment of acute disease like anaphylaxis
https://t.co/qxXi3vefjt