We track moving stimuli via EEG, find evidence that motion is extrapolated across distinct stages of processing + show how this effect may emerge from a simple synaptic learning rule!
tinyurl.com/2szh6w5c
i have been thinking a lot about dynamics lately. this article outlines three key principles - persistence, parallelism, and time-stamped encoding - that support human speech comprehension 🧠✨🌀
i have been thinking a lot about dynamics lately. this article outlines three key principles - persistence, parallelism, and time-stamped encoding - that support human speech comprehension 🧠✨🌀
www.biorxiv.org/content/10.6...
www.biorxiv.org/content/10.6...
Come check out my poster at #snl2026 @snlmtg.bsky.social, on Thursday Poster session C at 10:45am, poster C24!
Come check out my poster at #snl2026 @snlmtg.bsky.social, on Thursday Poster session C at 10:45am, poster C24!
We’re Minds, Machines, and Brains (MMB) 👤🤖🧠 a new open access journal from @mitpress.bsky.social exploring the principles of intelligence and cognition across natural and artificial minds.
Submissions open this Fall! 🔗 direct.mit.edu/mmb
We’re Minds, Machines, and Brains (MMB) 👤🤖🧠 a new open access journal from @mitpress.bsky.social exploring the principles of intelligence and cognition across natural and artificial minds.
Submissions open this Fall! 🔗 direct.mit.edu/mmb
We have analyzed a lot of training checkpoints to find out 🌠
Preprint: arxiv.org/abs/2604.02043
⬇️
We have analyzed a lot of training checkpoints to find out 🌠
Preprint: arxiv.org/abs/2604.02043
⬇️
- 🧠Brain2qwerty v1 is published at @Nature Neuroscience
- 🚀 Brain2Qwerty v2 is now publicly released
Explore how we decode sentences from non-invasive brain recordings: facebookresearch.github.io/brain2qwerty/
Code, papers, data below:
- 🧠Brain2qwerty v1 is published at @Nature Neuroscience
- 🚀 Brain2Qwerty v2 is now publicly released
Explore how we decode sentences from non-invasive brain recordings: facebookresearch.github.io/brain2qwerty/
Code, papers, data below:
Target article: www.cambridge.org/core/journal...
Commentaries: www.cambridge.org/core/journal...
Our response: www.cambridge.org/core/journal...
Target article: www.cambridge.org/core/journal...
Commentaries: www.cambridge.org/core/journal...
Our response: www.cambridge.org/core/journal...
Apply here: docs.google.com/forms/d/e/1F...
Lab info:
bourdillon-titan-lab.fr
feel free to RT ;)
Apply here: docs.google.com/forms/d/e/1F...
Lab info:
bourdillon-titan-lab.fr
feel free to RT ;)
Why do 𝙢𝙞𝙙𝙙𝙡𝙚 layers in LLMs and speech-audio models best predict brain responses to language?
We show a peak in the dimensionality of 🤖 activations (left) to track high 🧠 predictivity (right)
🧵(cross-posted from X)
Why do 𝙢𝙞𝙙𝙙𝙡𝙚 layers in LLMs and speech-audio models best predict brain responses to language?
We show a peak in the dimensionality of 🤖 activations (left) to track high 🧠 predictivity (right)
🧵(cross-posted from X)
We show that, while LLMs are optimized to predict the next word, the human brain modulates prediction efficiency by strategically grouping words into constituents. 1/n
More 👇
We show that, while LLMs are optimized to predict the next word, the human brain modulates prediction efficiency by strategically grouping words into constituents. 1/n
More 👇
$5M total · up to $500k per selected team
Let's open-source the modeling of the human brain brain activity!
➡️Apply on: digitalbrainproject.org
$5M total · up to $500k per selected team
Let's open-source the modeling of the human brain brain activity!
➡️Apply on: digitalbrainproject.org
We introduce the Zero-shot World Model (ZWM). Trained on a single child's visual experience, BabyZWM rapidly generates competence across diverse benchmarks with no task-specific training. 🧵
We introduce the Zero-shot World Model (ZWM). Trained on a single child's visual experience, BabyZWM rapidly generates competence across diverse benchmarks with no task-specific training. 🧵
No feature engineering (decode from raw signals), but capturing info that standard decoding often misses (oscillatory/aperiodic activity, connectivity).
Lightweight, INTERPRETABLE, and easy to use. (1/6)
www.biorxiv.org/content/10.6...
Please share, thank you 🙏
Please share, thank you 🙏
➡️ rdcu.be/fa3hk #psynomBRM
w/ @kriesjill.bsky.social, Shiven Gupta, Maria Papworth Burrel, & @lauragwilliams.bsky.social
🧵1/11
➡️ rdcu.be/fa3hk #psynomBRM
w/ @kriesjill.bsky.social, Shiven Gupta, Maria Papworth Burrel, & @lauragwilliams.bsky.social
🧵1/11
www.biorxiv.org/content/10.1...
www.biorxiv.org/content/10.1...
Why can LLMs predict brain activity so well? We're hiring a PhD student to find out -- AI interpretability meets neuroimaging
Deadline March 20
Please RT 🙏
👇
mpi.nl/career-education/vacancies/vacancy/fully-funded-4-year-phd-position-neuroai-language
Why can LLMs predict brain activity so well? We're hiring a PhD student to find out -- AI interpretability meets neuroimaging
Deadline March 20
Please RT 🙏
👇
mpi.nl/career-education/vacancies/vacancy/fully-funded-4-year-phd-position-neuroai-language
www.jneurosci.org/content/46/4...
www.jneurosci.org/content/46/4...
➡️ www.jneurosci.org/content/46/4...
with @lauragwilliams.bsky.social & @mvandermosten.bsky.social 🤝
Check out @stanfordbrain.bsky.social ’s summary of it ⬇️
➡️ www.jneurosci.org/content/46/4...
with @lauragwilliams.bsky.social & @mvandermosten.bsky.social 🤝
Check out @stanfordbrain.bsky.social ’s summary of it ⬇️
The textual basis of current LLMs causes trouble, but linguistically relevant insights *can* be found in systems modelling the more natural form of human spoken language: the speech signal itself. arxiv.org/abs/2512.14506
The textual basis of current LLMs causes trouble, but linguistically relevant insights *can* be found in systems modelling the more natural form of human spoken language: the speech signal itself. arxiv.org/abs/2512.14506