#CrickXrays25
X-ray #nanoimaging of biological tissues
🇬🇧🌐 @crick.ac.uk & online
tinyurl.com/crickxrays25
Sponsored by @dectris.bsky.social, @webknossos.org and @biologists.bsky.social and backed by @brukercorporation.bsky.social and Histomography
#CrickXrays25
X-ray #nanoimaging of biological tissues
🇬🇧🌐 @crick.ac.uk & online
tinyurl.com/crickxrays25
Sponsored by @dectris.bsky.social, @webknossos.org and @biologists.bsky.social and backed by @brukercorporation.bsky.social and Histomography
Critical point drying of brain tissue for x-ray phase contrast imaging.
@apeart.bsky.social @yuxinzhang.bsky.social @jkbrmn.bsky.social @apacureanu.bsky.social @andreas-t-schaefer.bsky.social
@carlesbosch.bsky.social
@esrf.fr
@crick.ac.uk
bioarXiv: doi.org/10.1101/2025...
Critical point drying of brain tissue for x-ray phase contrast imaging.
@apeart.bsky.social @yuxinzhang.bsky.social @jkbrmn.bsky.social @apacureanu.bsky.social @andreas-t-schaefer.bsky.social
@carlesbosch.bsky.social
@esrf.fr
@crick.ac.uk
bioarXiv: doi.org/10.1101/2025...
At #CrickXrays25 we'll tackle:
💫synchrotron upgrades
📈current limits in throughput, volume, resolution
🧪sample preparation for X-ray PC imaging
🧠♥️applications in neuroscience and tissue life science
🗓️13th October 2025
🇬🇧🌐 London & online
tinyurl.com/crickxrays25
At #CrickXrays25 we'll tackle:
💫synchrotron upgrades
📈current limits in throughput, volume, resolution
🧪sample preparation for X-ray PC imaging
🧠♥️applications in neuroscience and tissue life science
🗓️13th October 2025
🇬🇧🌐 London & online
tinyurl.com/crickxrays25
We mapped the structure and function of olfactory bulb circuits with in vivo 2-photon microscopy and synchrotron #Xray holographic nanotomography.
doi.org/10.1101/2025...
@yuxinzhang.bsky.social @andreas-t-schaefer.bsky.social @apacureanu.bsky.social
@crick.ac.uk @esrf.fr
We mapped the structure and function of olfactory bulb circuits with in vivo 2-photon microscopy and synchrotron #Xray holographic nanotomography.
doi.org/10.1101/2025...
@yuxinzhang.bsky.social @andreas-t-schaefer.bsky.social @apacureanu.bsky.social
@crick.ac.uk @esrf.fr
We combined 2P and synchrotron X-ray to understand mouse olfactory bulb circuits, linking physiology to structure in 3 animals!
doi.org/10.1101/2025...
🙌 @carlesbosch.bsky.social, @apacureanu.bsky.social, @andreas-t-schaefer.bsky.social, @esrf.fr, @crick.ac.uk
We combined 2P and synchrotron X-ray to understand mouse olfactory bulb circuits, linking physiology to structure in 3 animals!
doi.org/10.1101/2025...
🙌 @carlesbosch.bsky.social, @apacureanu.bsky.social, @andreas-t-schaefer.bsky.social, @esrf.fr, @crick.ac.uk
We combined 2P and synchrotron X-ray to understand mouse olfactory bulb circuits, linking physiology to structure in 3 animals!
doi.org/10.1101/2025...
🙌 @carlesbosch.bsky.social, @apacureanu.bsky.social, @andreas-t-schaefer.bsky.social, @esrf.fr, @crick.ac.uk
We combined 2P and synchrotron X-ray to understand mouse olfactory bulb circuits, linking physiology to structure in 3 animals!
doi.org/10.1101/2025...
🙌 @carlesbosch.bsky.social, @apacureanu.bsky.social, @andreas-t-schaefer.bsky.social, @esrf.fr, @crick.ac.uk
We explored how the timing between visual and auditory stimuli shapes multisensory interactions. Check it out!
We explored how the timing between visual and auditory stimuli shapes multisensory interactions. Check it out!