My first year at #SPIELitho 2024, San Jose, CA. I'm happy to get a chance to learn from legends such as Martin Van den Brink, CTO of ASML about history of lithography that enabled chip scaling, tribute to Gordon Moore @SPIEtweets
New work from @Phys2BioMed!
Happy to have contributed to this research together with Laura Martinez Vidal, @SanRaffaeleMI@UniversitaMilan@Optics11Life
We pair histology and mechanics to track disease progression in rat bladder
Check it out @CommsBio:
https://t.co/ljoOw28LAo
Our team is ready for you at #SLASEurope2022 - booth K2, until May 27th!
Explore the power of high-throughput screening of mechanical properties for drug development, 3D cell culture, regenerative medicine and more.
#SLAS22#mechanicalscreening
@Cyberplasm I've seen stiffening of the brain tissue and embryos which also depended on the duration of fixation. However, I was still able to see regional stiffness differences on both samples. Of course, biological relevance is questionable and better to use fresh tissues.
Our @JoVEJournal protocol for soft matter #nanoindentation (hydrogels, cells etc) using ferrule top nanoindenters from @Optics11Life is out: https://t.co/QzqRR0bS1B 1/3
Why is mechanobiology relevant? Mechanobiology provides pressing answers concerning human health. We want to bring that research #frombenchtobedside and created a competition “it`s time for translation”.
@UniklinikAachen@RWTH@ME3T_GradSchool@Nano4Mech @Jacopo_Di_Russo
Interested in #mechanobiology? Check out our collection of research and review articles from Communications Biology, curated by @FritzscheLab https://t.co/MEl10hQcvS
If you're attending @2021Termis, "stop by" our virtual booth on 15 - 19 Nov. Our application specialists will be offering free #mechanical sample tests with one of our systems.
Register here: https://t.co/Yxv7F8Qa8y
Don't forget to mail your sample (US or EU)
See you there!
Join us at our upcoming #webinar: Mechanics Matter in Life Science with guest speaker Remi Peyronnet, PhD
Learn about his findings in #mechanobiology and about Optics11 Life #nanoindentation with Kanupriya Khurana, PhD
Sept. 7th, 5pm CET
Register here: https://t.co/6ltXPuzMcp
It has been a pleasure learning so much at this year's #ExpBio conference! Got to hear from Zachary S. Clayton at @CUBoulder and from Dr. Keely Cassidy from @embryoed!😎 Keep up the great work folks! Don't forget to check out Optic11Lifes's booth today🤓https://t.co/e7deHkZuxG
Viscoelastic properties of white and gray matter-derived microglia differentiate upon treatment with lipopolysaccharide but not upon treatment with myelin. https://t.co/mKVfl06pus
🫀 @UniFreiburg group showed Piezo1 governs the stiffness properties of atrial fibroblasts and their local matrix environments. Their research finding will help #science develop therapies for heart disease. 🫀
#heart#biology#cells#Science#research
https://t.co/TxQLSmLBny
Laminin isoforms in hydrogels with controlled stiffness and protease degradability that bind growth factors. Defined environments for 3D culture, regeneration and in vitro models @AdvSciNews @theglasgowcemi@OanaDobre8405@DalbyMatthew@EPSRC@UofGlasgow https://t.co/gT8wsJh3Sp
The mechanical properties of white blood cells change (rigidity and viscosity) when they come into contact with pathogens! More details in a recent study by @_julienhusson from the LadHyX lab (@CNRSIdFSud), published in @BiophysJ ➡️ https://t.co/16vLPrGPHS
Just published: https://t.co/nJ1mfiLrz1
Load-Relaxation Characteristics of Chemical and Physical Hydrogels as Soft Tissue Mimics
Poroviscoelasticity, soft material nanoindentation with @Optics11Life, and how soft tissues behave more like chemically-linked hydrogels.
Another great study by @michelleoyen et al reportd a nanoindentation approach to profile viscoelasticity + poroelasticity of healthy or diseasd tissue models. The results have implications for fundamentl physiological studies, includg clinical studies. https://t.co/IG3AsQPOmr