The inhibitory cells’ development, diversity and abundance in the cortex is directed in part by pyramidal cells, a new preprint suggests.
By @OliviaGieger
https://t.co/kezWjarq2k
One of the most fun collaborations I ever had. Thanks @GPouchelon and @GordFishell for giving me the opportunity to contribute to this study. Congratulations to all the authors who made this paper possible.
Neurogliaform cells are probably the least studied type of interneurons. My dear lab mate @Su_hang_ has spearheaded the study performing in vivo two-photon imaging of these interneurons, capturing them in action during visual stimuli and locomotion.
A big shout out to @Su_hang_ for her amazing work with me and @LeenaAIbrahim , in identifying and studying the role of neurogliaform interneurons in V1 cortex. Come read about how these regulators of cortical function act in different cortical layers! https://t.co/UOKuN4kJQq
Happy to share our new J Neurosci paper, showing how mediodorsal (MD) thalamus engages CCK+ interneurons to evoke CB1R-sensitive feed-forward inhibition in L3 of prelimbic prefrontal cortex (PFC), led by @aichurokkamal, @kmanoocheri, and @theXL92:
https://t.co/aksHMgmuCb
Our paper just came out in @Nature. Congrats to everyone involved, and thanks to our amazing collaborators/former mentors @TonyZador@JesseAGillis Stephan Fischer, and Patrick Kanold. https://t.co/CCDqsjiPJd
The Fishell lab https://t.co/67Mk53XbAa @GordFishell at the Broad Institute @broadinstitute is hiring a computational associate. You will work with scRNAseq, scATACseq, spatial transcriptomics and more to learn about interneuron and developmental neurobiology! Please DM me/RT!
We're still not over this beautiful double cover for the October 13 issues of @ScienceMagazine and Science Advances! 😍🧠
Credit: Ivana Kapustová and Sten Linnarsson, The Karolinska Institute with the Allen Institute for Brain Science
Extremely excited about the beta release of our brand-new Allen Brain Cell (ABC) Atlas web portal! Currently it includes an scRNA-seq dataset & a MERFISH dataset, each with ~4M cells, representing ~5200 clusters in the whole mouse brain. It is based on https://t.co/Dp1PXfOC9m.
For those of you who may have missed it, here is a new paper on the surprisingly selective connectivity of cortical somatostatin cells that we just published in @NeuroCellPress ! @JJSherryWU@elaine_sevier https://t.co/DSzOjTSrYe
Brain imaging without compromise. ✨🔬 Using technology originally designed for defect detection in electronics manufacturing, the ExA-SPIM microscope is showing scientists the brain as it’s never been seen before. Look into the future of #microscopy at https://t.co/MrYDZQmrO6
Our own @HongkuiZeng has been elected to @theNASciences! She was chosen for her contributions to society's understanding of mammalian brain cells and connections, and leading the development of #OpenScience data and tools.
So after a 3 year revision, @LeenaAIbrahim 's take on how activity and Nova2 interact to direct synaptogenesis in SST interneurons. This is definitely a case where the reviewers comments helped. Hopefully published shortly in a peer-reviewed journal! https://t.co/joA9OElz5e
https://t.co/LRFAoKK7Rk
We @GaitiHasan @TheCoffeeNeuron report transgene- & feeder- free iPSC lines from a 21y old PLA2G6- Parkinson's patient & control @NCBS_Bangalore. Thanks to @BijuViswanath13, Dr Sanjeev Jain @NIMHANS_BLR for the patient samples,@India_Alliance for funding