We can't stop staring at this gorgeous image featuring the habenula, taken by @forestephanieg1 in the lab of @yaksi_emre at @KISNeuro!
Take a break from the infinite scroll and gaze at it!
https://t.co/8BbnbydgDB
We’re more than excited to announce our new paper out in @NatureNeuro!
A novel mechanism of short-term #plasticity? We found that synaptic vesicles dock transiently after an action potential.
Fantastic work @ultrafastgrant and everyone else involved!
https://t.co/JilFSY7THr
Big day for me today! So excited to see several years of my work on habenula development published in @ScienceAdvances! A big thank you to everyone who collaborated on this project and supported the process. Enjoy the read https://t.co/XdskTyQ7pk
Developing brains of zebrafish: from tiny machines to socially adept learners. @Yaksi_Emre@forestephanieg1 et al reveals sequential maturation & functional modularization of #habenula, a 🧠 region involved in learning & social behaviors. @ScienceAdvances
https://t.co/mzp6ZC0aon
Neurons that are born together, function together.... Wonderful to see that our preprint on the sequential neurogensis of functional modules in habenula by @forestephanieg1 is picked up by the node https://t.co/odGPObbWmC
Birthdate matters! Neurons born together work together. If you want to know more check this work from my colleagues @yaksi_emre@forestephanieg1 at @KISNeuro in collaboration with @Kizil_Lab_DZNE
Birthdate and functional development of neurons are tightly linked! Check out our new story on bioarchive with @yaksi_emre and in collaboration with @Kizil_Lab_DZNE
Habenular neurons that are born together, fire together, and form distinct funcitonal modules in the brain. I am so proud of this work from our lab, which was led by @forestephanieg1, in collaboration with @Kizil_Lab_DZNE
Here is our dispatch at @CurrentBiology , covering the recent work of @KarlDeisseroth lab on the role of #habenula networks in switching brain states and regulating animal behavior published at @CellCellPress. https://t.co/ldFixDS8qf
New today in Science: Specific, spontaneous activity patterns in OSNs alter expression of specific respective axon guidance genes! These genes are expressed in glomeruli-specific combinations and control OSN wiring to the OB. Mind-blowing paper 🤯🤯🤯 https://t.co/0pLE3d723G
The collection of microbes in the gut has powerful effects on our health—and some of these same bacteria could be making a home in our brains: https://t.co/OvegWAS2kt