1/8
In our new preprint, we identify a clozapine-responsive prefrontal ensemble that stabilizes decision-making under NMDA receptor hypofunction.
We further show that this ensemble can be rationally reactivated by multi-receptor pharmacology.
https://t.co/2sJxt8JMa1
Our new paper is out in Science!
We reveal neural mechanisms for updating feelings, such as liking or disliking, toward familiar individuals.
Congratulations, Narutoshi and MuYun!🎉
https://t.co/hK0HsgpKbX
How does the brain link a novel food to illness that happens later? We found that acetylcholine, released in part by parabrachial Calca neurons, can work through GPCRs in central amygdala to bridge the gap.
New preprint from @gstuber + Palmiter labs: https://t.co/thcod1hJE8
Our new paper is out in Nature, congrats to Sonja et al.! An excellent collab with Irina Dudanova's group.
We promoted neuroplasticity to improve behavior in a mouse model of a neurodegenerative disease.
https://t.co/9gkIs93VXs
8/8
Together, our results suggest that a clozapine-responsive prefrontal ensemble stabilizes decision-making and can be rationally reactivated by multi-receptor pharmacology.
JNS poster 3P-289, Aug 1, 12:50–13:50.
Preprint: https://t.co/2sJxt8JMa1
1/8
In our new preprint, we identify a clozapine-responsive prefrontal ensemble that stabilizes decision-making under NMDA receptor hypofunction.
We further show that this ensemble can be rationally reactivated by multi-receptor pharmacology.
https://t.co/2sJxt8JMa1
7/8
Does the cocktail simply mimic clozapine’s broad effects?
No. It rescued decision noise without reproducing clozapine-like NREM sleep or delta-power enhancement, suggesting partial separation of computational rescue from sleep-related effects.