FYLA(@FYLA_LASER) 's Twitter Profile Photo

eliminates the need for multiple lasers or filters, simplifying setup and reducing costs.

They expand possibilities and allow for new dimensions in . As advances, we witness incredible progress.

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Roman Renger(@RengerRoman) 's Twitter Profile Photo

Made it to for a week of top-notch chromatin and epigenetics research at 🧬
We still have a few open slots for our @Lumicks_nl C-Trap imaging and manipulation live demos.
Meet us at our booth!

Made it to #Heidelberg for a week of top-notch chromatin and epigenetics research at #EMBLChromatin 🧬
We still have a few open slots for our @Lumicks_nl C-Trap #singlemolecule imaging and manipulation live demos.
Meet us at our booth!
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Guoming Gao(@Guoming_Gao) 's Twitter Profile Photo

Thanks for the post, Nils! It was such a pleasure to present 3 selected projects of mine yesterday focusing on a view of how condensates impact RNA biology. Thanks everyone for attending my defense! Such a full room! I'm so flattered! Thanks a ton for all the…

Thanks for the post, Nils! It was such a pleasure to present 3 selected projects of mine yesterday focusing on a #SingleMolecule view of how condensates impact RNA biology. Thanks everyone for attending my defense! Such a full room! I'm so flattered! Thanks a ton for all the…
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LUMICKS_USA(@LUMICKS_US) 's Twitter Profile Photo

🚀 We were thrilled to join the , with a special thanks to our guest speakers: Gabriella Chua, Brittani Schnable, and Jee Min Kim !🚀

We're proud to support the community by uplifting emerging scientists!

🚀 We were thrilled to join the #BPS2024, with a special thanks to our guest speakers: Gabriella Chua, Brittani Schnable, and Jee Min Kim !🚀

We're proud to support the #singlemolecule community by uplifting emerging scientists!
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Thomas Perkins(@ThomasTPerkins) 's Twitter Profile Photo

Excited to share work led by David Jacobson measuring a light-induced energetic change in single molecules of bacteriorhodopsin (bR) As a bonus, an unexpected long-lived 'misfolded' state off of bR's canonical photocycle.

pnas.org/doi/10.1073/pn…

Excited to share work led by David Jacobson measuring a light-induced energetic change in single  molecules of bacteriorhodopsin (bR)  As a bonus, an unexpected long-lived 'misfolded' state off of bR's canonical photocycle.
#singlemolecule #AFM #membrane
pnas.org/doi/10.1073/pn…
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Amandine Moretton(@AmandineMorett) 's Twitter Profile Photo

Happy to share that I've started a postdoc fellowship awarded by AFM-Téléthon 🤩
I'll be characterizing mitochondrial DNA maintenance proteins in health and disease 🔬🧬 in the Radiobiology-Biophysics Lab (LPC Clermont) team UCA Recherche.

Happy to share that I've started a postdoc fellowship awarded by @Telethon_France 🤩
I'll be characterizing mitochondrial DNA maintenance proteins in health and disease 🔬🧬 in the @RadioBioPhysics team @UCA_Recherche.

#mtDNA #SingleMolecule
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Molecular Machines Group(@Mol_Machines) 's Twitter Profile Photo

📢We're searching for a postdoc to join our team UNSW Medicine & Health. We investigate dynamics of host-pathogen interactions using fluorescence 🔬🦠
Apply before 26Nov2023.
More details🔗
external-careers.jobs.unsw.edu.au/cw/en/job/5205…

📢We're searching for a postdoc to join our team @UNSWMedicine. We investigate dynamics of host-pathogen interactions using #SingleMolecule fluorescence #microscopy🔬🦠
Apply before 26Nov2023. 
More details🔗
external-careers.jobs.unsw.edu.au/cw/en/job/5205…
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Matt Baker(@phatmattbaker) 's Twitter Profile Photo

Great to host symposium on Synbio and Molecular Evolution FORTH Institute of Molecular Biology - great chats & 🤝🇬🇷🇪🇺🇬🇧🏴󠁧󠁢󠁷󠁬󠁳󠁿🇩🇪🇩🇰🇯🇵🇫🇷🇺🇸🇦🇺🤝

Sessions on of molecular motors, molecular , lipid and FRET (& !)

UNSW Science

Great to host symposium on Synbio and Molecular Evolution @FORTH_ITE Institute of Molecular Biology - great chats & 🤝🇬🇷🇪🇺🇬🇧🏴󠁧󠁢󠁷󠁬󠁳󠁿🇩🇪🇩🇰🇯🇵🇫🇷🇺🇸🇦🇺🤝

Sessions on #biophysics of molecular motors, molecular #evolution, lipid #bilayers and #singlemolecule FRET (& #ML!)

@UNSWScience
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davide calebiro(@DavideCalebiro) 's Twitter Profile Photo

Combining our innovative approach in living cells with simulations, we dissected the sequence of events in receptor-arrestin interactions with unprecedented detail

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