Happy to share our new review on Neural Mechanisms of Social Hierarchy across Species. We discussed how different individuals in various species, from fish to humans, achieve high social status and the neural circuits supporting each of those strategies.
https://t.co/4mxuXbqbHU
What has changed in mama bear brain (well, actually mice) to make her risk her life to attack a potential threat and protect her young? Oxytocin is the key! Happy to share our new study led by two awesome postdocs: Takashi Yamaguchi and Rongzhen Yan.
https://t.co/wInz2rVo8M
理研BDR宮道先生 @K_Miyamichi と企画した、Neuroscience Researchの特集号Parental Brainが発刊となりました!
https://t.co/Y3WpeRUjcU
Great thanks to Drs. Marc H Bornstein, @sheacshl@moccalin@Froemkelab Gianluca, Muroi, Amano, Fukumitsu and all contributors!
We recruiting! Faculty job opportunity in the USF Center for Molecular Psychiatry. Please apply if you are interested, and also help me circulate. https://t.co/z3buURkPdR
We are excited to share our latest work in @ScienceMagazine studying cooperative behavior in both biological and artificial intelligence systems — fantastic work by @JanineJiang22, Linfan Gu, and wonderful collaboration with @JonathanCKao! https://t.co/nVxe3E3fGA
Our paper simulating fluorescence lifetime in real-life experiments is now a Version of Record @eLife! We hope it helps FLIM users with more rigor and innovation. If you are interested in turning our innovation proposals into reality, we welcome motivated people to join our lab.
(1/3) Excited to introduce our new GRAB sensors for a series of steroid hormones! These tools enable real-time detection of steroid hormone dynamics in vivo🐭🧠.Happy to share these sensors and welcome any feedback!Please contact [email protected] for information.
Excited to share our new study arguing for the existence of parallel neural pathways mediated by LepR or non-LepR neurons that each is sufficient to drive obesity. The obesity driven by non-LepR neurons is relevant to DIO and can be a novel neural basis for leptin resistance.
🧠 Curious about neuromodulator interactions or how sleep works its magic? Apply to our lab @WashUMedNeuro as a postdoc to bridge cellular & systems neuroscience by decoding biochemical signaling dynamics in the brain! Please RT. #Neuroscience#PostdocOpportunity#BrainResearch
Excited to share our Science paper on HaloDA1.0-the first genetically encoded far-red dopamine sensor! 🥳It enables powerful multiplex imaging in neurons, brain slices, and live animals.🧠🔬 #GRABsensors#Dopamine
https://t.co/KBKc2e8Q6D
Dendritic inhibition terminates plateau potentials in CA1 pyramidal neurons
First preprint from the lab!
Wonderful team effort, lead by incredibly talented Lee Vaasjo (@LVaasjo) and Shawn Kotermanski
https://t.co/7pJzkDHeFt