Paul Dalton
@meltelectrospin
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Melt Electrospinning, Melt Electrowriting, Additive Manufacturing, Neural Tissue Engineering
Eugene, Oregon
Joined November 2012
Happy Friday from the Knight Campus! 🍂 A stunning fall day here by the Willamette River. Our community is energized for the exciting work ahead. #KnightCampus #AccelerateYourCareer #UOResearch
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An incredible opportunity with an amazing technology...
My lab at @ETH_en is looking to hire an engineering PhD student to work on next generation FLight printers https://t.co/0yN1Oto3fX Online applications at:
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Are you at #TERMIS2024? Come visit us at booth 103 and learn more about the Department of Bioengineering and the transformative developments taking place at the #KnightCampus. Members of the @meltelectrospin Lab will be handing out 3d printed chocolate!
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Happy International Women in Engineering Day!! #INWED24 #WomeninEngineering #EnhancedbyEngineering @QUT #BioAM
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A testament to the importance of high resolution technologies when biofabricating tissues. @LOrealGroupe has been tremendous to work with! @UOKnightCampus @uoregon
https://t.co/UvsCYmNkZN
nypost.com
L'Oreal is developing of realistic artificial skin that will be able to "feel," paving the way for ethical testing of cosmetics and other products without the use of animals.
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Our 𝗿𝗲𝘃𝗶𝗲𝘄 "Materials and Strategies to Enhance Melt Electrowriting Potential" is out in Advanced Materials! 👀 https://t.co/Oo9W7XINXF A must-read for MEW researchers and curious minds!💡 @meltelectrospin @UOKnightCampus @labquimac @AnderReizabal @BCMaterials @WileyGlobal
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Curious about melt electrowriting, what it is and how it's used? Join this session on April 4th to gain insights and the latest developments in this powerful 3D printing technology
Join a panel of leading experts Next Thursday April 4th 2 PM Pacific Time and explore together the potential of #MEW #MELTElectrowriting #3DPrinting in #healthcare - https://t.co/p111vOSS9H
https://t.co/wMQMv5vNWe
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New cover on @ACSBiomaterials! Great paper “Cryo-Electrohydrodynamic Jetting of Aqueous Silk Fibroin Solutions” with the participation of Senentxu Lanceros-Méndez, @@AnderReizabal and @PaulaSaiiz. Congratulations!! @meltelectrospin
https://t.co/vZVpYD5xUG
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Proud of our contribution to fabricate full thickness human skin in vitro, showing how melt electrowriting creates advanced, quality products. The dermal-epidermal junctions are well-replicated, working together with L'Oreal researchers. More to come! https://t.co/TKD2ILUJyT
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Officially a 'Senior Research Fellow' (Level C) today! Grateful for the massive boost this promotion gives me to take the next steps in my academic adventure. Pictured: new headshot, new toys for the new lab & new research directions! 👩🔬🌱🔬 @QUT #biofabrication #AcademicTwitter
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Check out our preprint describing a new application of nanohoops in melt electrowriting - wonderful collaboration with my UO colleague, Paul Dalton, at the @UOKnightCampus @meltelectrospin @uoregon 🦆🦆 https://t.co/46Cjbuhx85
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Research stagnates without new abilities- submit your new biofabrication ideas to the Emerging Biofabrication Technologies symposium at TERMIS World Congress in Seattle. @TERMISAM
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Thanks to brilliant #MEWron technology developed by @luposchainsky & @meltelectrospin's team at the @UOKnightCampus, we have developed #biomimetic #microfiber #polyethyelene scaffolds to improve surgical options for #auricular #reconstruction. https://t.co/kumm6HHvvg
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More accolades to wrap up a fantastic 2023! 🏆 Naomi won the #QUT Inclusion & Diversity #award for empowering staff and students to achieve #excellence Currently in the #USA, Ted won the #HDR Support award for going above and beyond in his role Congratulations! 🥳 #superstars
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If you are "serious" about a dream, but you are not ready to move where the best are, not ready to train much harder, not ready to destroy the older versions of yourself, not ready to take any financial risk, not ready to lose your little comfort, then you are not serious at all.
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Check this version of the MEWron family! Freezing the fibers with a collector at -35 ºC opens up a lot of possibilities for processing new materials, doesn't it? 💡🪢 #MEWron
Discover the innovation behind our modified 3D printer, equipped with a -35 °C collector and combined with silk concentrated solution, to facilitate the rapid solidification of microfibers for biologically relevant, hi-res, cm-scale, porous constructs https://t.co/p0hOgnvFwp
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Discover the innovation behind our modified 3D printer, equipped with a -35 °C collector and combined with silk concentrated solution, to facilitate the rapid solidification of microfibers for biologically relevant, hi-res, cm-scale, porous constructs https://t.co/p0hOgnvFwp
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Visible excitement proportional to how motivated I am to develop #nextgeneration #biofabtication solutions for #microtia and other conditions requiring reconstructive surgery. @ASBTE1 @QUT @UOKnightCampus #3Dprinting [credit to DALL.E for this futuristic vision board!]
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Of course, this paper comes with some stunning visuals! SEM image below as taken, with cool charging effects...no #startrek filter!. Awesome persistant research from @AnderReizabal on microscale 3D printing🤩
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