If you're interested in #fluorescenceLifetime or #STED imaging, don't miss this webinar on the new #STEDYCON2.
Time for the second #MifoBio2025 workshop with @laurent-le.bsky.social and Andrea Bucci on building a #fluorescencelifetime #imagescanningmicroscopy system. Thanks @erc.europa.eu, @iitalk.bsky.social and @genoainstruments.bsky.social
#SPADarray #BrightEyes_ERC #photonresolvedmicroscopy
Our lab, and the whole #ImageScanningMicroscopy community, owes you a lot for the many tools you’ve developed. Your latest gift: the BIRFI algorithm from Gómez-Sánchez, now in Python and extended for #fluorescencelifetime ISM.
#SPADarray #superresolution #BrightEyes_ERC
github.com/VicidominiLa...
Great news!
The first #HILIGHTProject detector built at FBK and now under test. A key step for delivering digital #FluorescenceLifetime at record speed. Next: integration with laser sources from @csem.ch+III-V Lab at Brunel University @aesposito1975.bsky.social+VIVASCOPE
hilighthorizon.eu/blog/
Cervical cancer tissue stained with PanCK-Opal 780 - Imaged on a Leica STELLARIS FALCON
Cervical Cancer tissue - PanCK Opal780 stained - left intensity only | right Fluorescence lifetime (rainbow 0,5-1,4 ns) showing the PanCK on cyan, non specific signal blue endogenous tissue signals in red #FluorescenceFriday #FluorescenceLifetime - interested ? FLIM course in July @ EMBL 😜
3D rendering of a Zebrafish embryo showing vasculature (GFP - magenta) and endogenous fluorescence (cyan) separated through Fluorescence Lifetime Imaging
3D rendering of a Zebrafish embryo showing vasculature (GFP) and endogenous fluorescence
#fluorescencefriday
#fluorescencelifetime
3D rendering Zebrafish embryo vasculature + endogenous fluorescence - intensity only (greyscale) corresponding lifetime separated (GFP - magenta | endogenous - cyan)
Interested? apply for our summer course @ EMBL in Heidelberg: www.embl.org/about/info/c...