brainard lab @ ucsf
cog sci/mcintyre lab @ utd
cirorandazzo.com/2025/11/29/i...
cirorandazzo.com/2025/11/29/i...
www.thetransmitter.org/systems-neur...
#neuroskyence
www.thetransmitter.org/systems-neur...
#neuroskyence
@uhnresearch.ca @uhn.ca #Neuralink #neuroscience #AI #neuroAI #compneuro
@uhnresearch.ca @uhn.ca #Neuralink #neuroscience #AI #neuroAI #compneuro
It's rough around the edges but it works way better than anything else.
It's rough around the edges but it works way better than anything else.
How do neural dynamics in motor cortex interact with those in subcortical networks to flexibly control movement? I’m beyond thrilled to share our work on this problem, led by Eric Kirk @eric-kirk.bsky.social with help from Kangjia Cai!
www.biorxiv.org/content/10.1...
How do neural dynamics in motor cortex interact with those in subcortical networks to flexibly control movement? I’m beyond thrilled to share our work on this problem, led by Eric Kirk @eric-kirk.bsky.social with help from Kangjia Cai!
www.biorxiv.org/content/10.1...
10 yrs of mouse social networks + 1.25 yrs of acoustic data ➡️ insight into vocalization & sociality in a wild population of your favorite lab model 🐁
paper: bit.ly/4n93yyD
data: bit.ly/4lfFBEk
code: bit.ly/4kNnMwx
#bioacoustics #neuroskyence
1/8
10 yrs of mouse social networks + 1.25 yrs of acoustic data ➡️ insight into vocalization & sociality in a wild population of your favorite lab model 🐁
paper: bit.ly/4n93yyD
data: bit.ly/4lfFBEk
code: bit.ly/4kNnMwx
#bioacoustics #neuroskyence
1/8
Check them out and register (free!) here 👇
#neuroskyence #compneurosky
Check them out and register (free!) here 👇
#neuroskyence #compneurosky
We previously discovered that sperm whales have analogues to human vowels.
In a new preprint, we analyze linguistic behavior of whale vowels.
We previously discovered that sperm whales have analogues to human vowels.
In a new preprint, we analyze linguistic behavior of whale vowels.
#neuroskyence #neurology
bsky.app/profile/deme...
In this 2024 study of 44 older adults with mild cognitive impairment (MCI), resistance training improved white matter integrity in the fronto-occipital (B) and corticospinal fasciculi (D), and ... 2/2
#neuroskyence #neurology
bsky.app/profile/deme...
How do we build neural decoders that are:
⚡️ fast enough for real-time use
🎯 accurate across diverse tasks
🌍 generalizable to new sessions, subjects, and even species?
We present POSSM, a hybrid SSM architecture that optimizes for all three of these axes!
🧵1/7
How do we build neural decoders that are:
⚡️ fast enough for real-time use
🎯 accurate across diverse tasks
🌍 generalizable to new sessions, subjects, and even species?
We present POSSM, a hybrid SSM architecture that optimizes for all three of these axes!
🧵1/7
Today we are launching our new Thematic Collections to organize our growing set of articles!
Today we are launching our new Thematic Collections to organize our growing set of articles!
(1/6)
(1/6)
We are now developing foundation models from these large datasets and testing what this enables. Two recent preprints:
We are now developing foundation models from these large datasets and testing what this enables. Two recent preprints:
arxiv.org/abs/2505.13080
arxiv.org/abs/2505.13080
data-for-good-team.org
data-for-good-team.org
a) “the bitter lesson”’s promise of scale did not deliver wrt AI reasoning & higher cog functions—O3 hallucinates 2x more than O1
b) prediction is not understanding, hallucinating is worse
c) gen AI could help neuroAI but following latest AI trends is not a paradigm shift
www.thetransmitter.org/neuroai/acce...
a) “the bitter lesson”’s promise of scale did not deliver wrt AI reasoning & higher cog functions—O3 hallucinates 2x more than O1
b) prediction is not understanding, hallucinating is worse
c) gen AI could help neuroAI but following latest AI trends is not a paradigm shift