Sign in

Stoyo

@stoyo.bsky.social
188 followers 402 following 38 posts

Neuroscientist at the Gogolla lab, Max Planck Institute of Psychiatry. Trying to understand emotions. Doing optical things in the insula.

PostsRepliesMedia
Reposted by Stoyo
Max Planck Institute of Psychiatry @mpi-psychiatry.bsky.social · 31/08/2026
📣We are hiring: Join our Institute with your own Max Planck Research Group in clinical psychiatry! 🧑‍🔬This position is equivalent to a W2 Professorship at a German university, or Associate Professor internationally. 🔗Apply until October 12th! You can find all information here: tinyurl.com/jar7evpc
064
Reposted by Stoyo
Jennifer Bussell PhD @jenbussell.bsky.social · 30/07/2026
How does the brain represent the value of knowledge? In our paper--out now at Nature Neuroscience--we identify a representation of intrinsic information value within neural population structures in the orbitofrontal cortex in mice. www.nature.com/articles/s41593-026-02377-y #neuroskyence 🧠🧪 (1/8)
nature.com
Representations of the intrinsic value of information in mouse orbitofrontal cortex - Nature Neuroscience
Mice are motivated to seek information of no extrinsic value. Recording neural activity in orbitofrontal cortex reveals a representation of the value of information that is distinct from the value of ...
918065
Reposted by Stoyo
Spencer LaVere Smith @spencerlaveresmith.bsky.social · 25/07/2026
Two-photon calcium imaging. What makes for good data? How can we optimize experiments to get good data? New post labrigger.com/blog/2026/07... and new free web apps from @filip-tomaska.bsky.social (1/8)
17321
Reposted by Stoyo
Roxana Zeraati @roxana-zeraati.bsky.social · 07/07/2026
Our paper "Neural timescales from a computational perspective" is finally out in @natneuro.nature.com: www.nature.com/articles/s41... We discuss how computational models and methods can distill empirical observations on neural timescales into quantitative, testable theories of brain computation.
nature.com
Neural timescales from a computational perspective - Nature Neuroscience
This review integrates computational approaches to provide a unified view on how data analysis methods, biophysical mechanistic models and machine learning approaches can help to uncover the origins a...
422986
Stoyo @stoyo.bsky.social · 02/07/2026
Based on the abstract, this sounds amazing! Any chance you’re looking for people to start testing this out? It sounds like this approach may be perfect for what we’re after in the lab.
100
Reposted by Stoyo
Zhiwen Ye @zhiwenneuron.bsky.social · 19/06/2026
1/ Complex behavior demands the sequential coordination of hundreds of muscle groups. The body is mapped topographically in the brain, but does neural activity actually propagate across these maps to organize sequential action? Our new paper in Science: doi.org/10.1126/scie... 🧵
26419
Reposted by Stoyo
Paul Kristian LaFosse @lafosse.bsky.social · 15/05/2026
🚨 Ever wanted a simple way to control the activity of thousands of neurons? We introduce an all-optical raster photostimulation method to do just that! w/ @computingnature.bsky.social @marius10p.bsky.social #FluorescenceFriday #neuroskyence www.biorxiv.org/content/10.6... 1/n
25921
Stoyo @stoyo.bsky.social · 14/05/2026
Good to see that written down. In this formulation allostasis is very “predictive processing”, which can itself be a somewhat nebulous explanatory infrastructure - probably for the same reason
010
Stoyo @stoyo.bsky.social · 09/05/2026
A problem defined in terms of what we will be unable to understand once we understand the things we don’t understand. Pretty compelling writing
000
Stoyo @stoyo.bsky.social · 09/05/2026
This discussion is making my amygdala light up
050
Stoyo @stoyo.bsky.social · 04/05/2026
Oh wow. Did Celentano write a Neuroscience song? My preferred title, after much thought, would be Frontoparieloscillopathodysrhythmicity.
020
Reposted by Stoyo
Dorothy Bishop @deevybee.bsky.social · 04/05/2026
painful reading How lack of data sharing wastes everyone’s time merenlab.org/2026/04/15/u...
merenlab.org
Unfalsifiable by Design: A Year of Trying and Failing to Reproduce a Human Microbiome and Autism Study
The myth of open data, reproducibility, responsibility, and accountability in science, and your role in it
0103
Reposted by Stoyo
The Transmitter @thetransmitter.bsky.social · 27/04/2026
Prediction without understanding sustained astronomy through a thousand years of epicycles, writes @tonyzador.bsky.social. AI is now offering neuroscience the same deal. #neuroskyence www.thetransmitter.org/machine-lear...
thetransmitter.org
Can AI do neuroscience without understanding?
Prediction without understanding sustained astronomy through a thousand years of epicycles. Artificial intelligence is now offering neuroscience the same deal.
312152
Reposted by Stoyo
Jeremiah Cohen @jeremiahycohen.bsky.social · 13/04/2026
Delighted to share our discoveries about one of the brain's neurotransmitter systems: www.biorxiv.org/content/10.6... Together with colleagues at the @alleninstitute.org, we have learned a lot about a tiny cluster of neurons in the brainstem locus coeruleus (LC) that releases norepinephrine (NE). 1
biorxiv.org
7254120
Reposted by Stoyo
Spiegel Lab @spiegel-lab.bsky.social · 03/04/2026
Paper Alert 🚨🚨🚨 Want to analyze your in vivo functionally characterized neurons with RNA-seq, spatial transcriptomics, immunolabeling, or ex vivo patch-clamp? Use our awesome 2P-NucTag approach! Great collab w/ @attila_losonczy & team, congrats to all. www.sciencedirect.com/science/arti...
sciencedirect.com
2P-NucTag: On-demand phototagging for molecular analysis of functionally identified cortical neurons
Neural circuits are characterized by genetically and functionally diverse cell types. A mechanistic understanding of circuit function is predicated on…
021
Reposted by Stoyo
Ann Kennedy @antihebbiann.bsky.social · 03/04/2026
transformer-circuits.pub/2026/emotion... This got press hate because of the word "emotions" but it is cool work. "Internal motivational states" serve as a form of working memory that helps animals organize their behavior, so why not ask if similar computational primitives help LLMs to do the same?
transformer-circuits.pub
Emotion Concepts and their Function in a Large Language Model
1146
Stoyo @stoyo.bsky.social · 29/03/2026
Congratulations, that’s so impressive! Any chance of combining with a calcium indicator and being able to separate somatic activity from local NE release under 2P?
110
Reposted by Stoyo
Meryl Malezieux @merylneuro.bsky.social · 23/03/2026
1/8 New preprint alert! How are signals from the heart encoded in the brain? What could be the functional implications of cardioception? We found that neurons in the posterior insular cortex are precisely tuned to heartbeats, and that this cardio-insular coupling supports emotion coding in mice.
biorxiv.org
28840
Reposted by Stoyo
Nadine Gogolla @gogolla-lab.bsky.social · 23/03/2026
New preprint! Follow the thread to find out about the exciting work of an outstanding postdoc in my lab @merylneuro.bsky.social !!!
1308
Reposted by Stoyo
Kevin Mitchell @wiringthebrain.bsky.social · 19/03/2026
I really enjoyed the #COSYNE2026 (comp neuro) meeting - amazing talks and fantastic poster sessions! 👏 Still surprised how little mention there was of either evolution or development, though. It's worth keeping in mind that things are the way they are because they got that way! 😉
2224
Reposted by Stoyo
Fanny Cazettes @fannycazettes.bsky.social · 09/03/2026
Excited to co-organize a #COSYNE2026 workshop with Marieke Scholvinck (@zeronoiselab.bsky.social) on March 17 in Cascais 🧠🌊 *Inferring neural latent states from behavior* Featuring fantastic speakers across experimental & computational #neuroscience (list below 👇) Hope to see many of you there! 👋
1125
Reposted by Stoyo
Vijay Mohan K Namboodiri @vijay-mkn.bsky.social · 15/02/2026
Very excited to post our paper led by @daburke.bsky.social www.nature.com/articles/s41... where we uncover a simple mathematical rule underlying how brains learn that a cue predicts a reward. 1/26
nature.com
Duration between rewards controls the rate of behavioral and dopaminergic learning - Nature Neuroscience
Cue–reward learning rate scales proportionally with the time between rewards. Consequently, learning over a fixed duration is independent of the number of trials. This challenges trial-based dopamine ...
48530
Reposted by Stoyo
Chiara Pepe @chiarapepe.bsky.social · 11/02/2026
🐭🧠 Can fUSI truly map canonical mouse resting-state networks — and how does it compare to fMRI? I’m excited to share the work of my PhD in our new preprint!👉 doi.org/10.64898/202... Go check it out — it’s time to expand your neuroimaging toolkit 🧠🚀
11811
Stoyo @stoyo.bsky.social · 12/02/2026
Arteries are red, veins are blue, “Strong coupling” seemed solid and true; Yet blood runs high when spikes are few— A troubled bond comes into view. 😬 www.nature.com/articles/s41...
000
Reposted by Stoyo
Carsen Stringer @computingnature.bsky.social · 12/02/2026
🔬🧠 Releasing the 1.0 version of #Suite2p and THE PAPER w/ @marius10p.bsky.social! Now with GPU acceleration. Want to use Suite2p but don’t have 100,000 neuron recordings? We show you how to get those with a standard 2p microscope #neuroscience #imaging #neuroAI www.biorxiv.org/content/10.6...
210136
Reposted by Stoyo
Anna Vasilevskaya @loghyr.bsky.social · 30/01/2026
Our work with @georgkeller.bsky.social on testing predictive processing (PP) models in cortex is out on biorvix now! www.biorxiv.org/content/10.6... A short thread on our findings and thoughts on where we should move on from PP below.
biorxiv.org
A functional influence based circuit motif that constrains the set of plausible algorithms of cortical function
There are several plausible algorithms for cortical function that are specific enough to make testable predictions of the interactions between functionally identified cell types. Many of these algorithms are based on some variant of predictive processing. Here we set out to experimentally distinguish between two such predictive processing variants. A central point of variability between them lies in the proposed vertical communication between layer 2/3 and layer 5, which stems from the diverging assumptions about the computational role of layer 5. One assumes a hierarchically organized architecture and proposes that, within a given node of the network, layer 5 conveys unexplained bottom-up input to prediction error neurons of layer 2/3. The other proposes a non-hierarchical architecture in which internal representation neurons of layer 5 provide predictions for the local prediction error neurons of layer 2/3. We show that the functional influence of layer 2/3 cell types on layer 5 is incompatible with the hierarchical variant, while the functional influence of layer 5 cell types on prediction error neurons of layer 2/3 is incompatible with the non-hierarchical variant. Given these data, we can constrain the space of plausible algorithms of cortical function. We propose a model for cortical function based on a combination of a joint embedding predictive architecture (JEPA) and predictive processing that makes experimentally testable predictions. ### Competing Interest Statement The authors have declared no competing interest. Swiss National Science Foundation, https://ror.org/00yjd3n13 Novartis Foundation, https://ror.org/04f9t1x17 European Research Council, https://ror.org/0472cxd90, 865617
25016
Reposted by Stoyo
stefanofusi.bsky.social @stefanofusi.bsky.social · 09/01/2026
Explicit and implicit modularity that emerges in simple neural network models even in the absence of anatomical constraints. Whether modularity emerges or not strongly depends on the geometry of the inputs and other factors. Extensively revised article with many new results. With @wjj.bsky.social
0174
Reposted by Stoyo
The Transmitter @thetransmitter.bsky.social · 09/01/2026
Facial expressions may involve an “everything, everywhere, all at once” type of coding in the brain, a new study suggests. By @natmesanash.bsky.social #neuroskyence www.thetransmitter.org/emotion-proc...
thetransmitter.org
Facial expressions less reflexive than previously thought
A countenance such as a grimace activates many of the same cortical pathways as voluntary facial movements.
0189
Stoyo @stoyo.bsky.social · 09/01/2026
They’ve found the dangerous parts uninteresting. Spending time in the wild likely enhances exploratory drive, and that seems like the more probable explanation for the results that the paper (and article about it) interpret, in my view unjustifiably, as reduced “fear”.
000
Stoyo @stoyo.bsky.social · 09/01/2026
The elevated plus maze captures the compromise between two drives: the desire to stay it out of danger (“anxiety”) and the desire to explore a novel environment. When mice are returned to the EPM and spend more time in the safe areas they haven’t “developed a fear” /1
110
Reposted by Stoyo
The Transmitter @thetransmitter.bsky.social · 08/01/2026
Emotionally driven behaviors may engage broader neuronal activity than previously thought—challenging the idea that facial expressions are largely reflexive and involuntary, a new study finds. By @natmesanash.bsky.social #neuroskyence www.thetransmitter.org/emotion-proc...
thetransmitter.org
Facial expressions less reflexive than previously thought
A countenance such as a grimace activates many of the same cortical pathways as voluntary facial movements.
0194
Stoyo @stoyo.bsky.social · 03/01/2026
It’s behind a paywall for some - text me if you’re curious
000
Stoyo @stoyo.bsky.social · 03/01/2026
Recently published: The Study of Emotion in Other Animals - a primer on affective neuroscience in “nonhumans”. Framework and case studies for probing emotions in the brain. Cambridge Handbook of Human Affective Neuroscience. Thanks to @gogolla.bsky.social! www.cambridge.org/core/books/a...
cambridge.org
The Study of Emotion in Other Animals (Chapter 8) - The Cambridge Handbook of Human Affective Neuroscience
The Cambridge Handbook of Human Affective Neuroscience - October 2025
230
Stoyo @stoyo.bsky.social · 03/01/2026
But really I’m confused and waiting for Ralph Adolphs’ new book to resolve this once and for all
010
Stoyo @stoyo.bsky.social · 03/01/2026
Neuropeptide-dependent scaling/persistence of a valenced, (probably) generalizable internal state. It lets the organism compare otherwise incommensurable motivational concerns (hunger and pain). Certainly seems biomarker-ish, and emotion-like. Tempting to require subjective self-report, but why
010
Stoyo @stoyo.bsky.social · 03/01/2026
Great! Does one bite the bullet and call this an emotion? It walks and quacks. Or is the framework too capacious, forcing us to use a conventional term in a confusing way. Like “valence”/chemistry and “stress”/physics, maybe we should port a new term into neuro, smth evocative that isn’t overloaded
140
Reposted by Stoyo
Ann Kennedy @antihebbiann.bsky.social · 30/12/2025
"My New Year's Resolution is to find a principled way to think about all those cell types in the brain" Why friend, you are in luck, because @rgast.bsky.social has just the perspective for you: www.sciencedirect.com/science/arti...
sciencedirect.com
How heterogeneity shapes dynamics and computation in the brain
Much effort has been spent clustering neurons into transcriptomic or functional cell types and characterizing the differences between them. Beyond sub…
16927
Reposted by Stoyo
Martin Wiener @martinwiener.bsky.social · 27/12/2025
One interesting thing about this finding: People with ADHD commonly experience issues with time perception, which Ritalin is able to restore. Notably, the networks observed here are the same ones we see in timing studies (including insula!)
3136
Reposted by Stoyo
Ben Hayden @benhayden.bsky.social · 23/12/2025
New Perspective from myself, Sarah Heilbronner and @myoo.bsky.social . “Rethinking the centrality of brain areas in understanding functional organization” in Nature Neuroscience. 🧵 rdcu.be/eVZ1A
rdcu.be
Rethinking the centrality of brain areas in understanding functional organization
Nature Neuroscience - Parcellation of the cortex into functionally modular brain areas is foundational to neuroscience. Here, Hayden, Heilbronner and Yoo question the central status of brain areas...
925099
Stoyo @stoyo.bsky.social · 15/12/2025
Oh, no reference, was just trying to start a cortico-cortical feud. Brain areas that compete for glory with the area that I work on need to be shamed, ridiculed, suppressed. Insular chauvinism. In our aggressive frontostriatal expansion campaign the ACC will be one of the first areas we annex
000
Stoyo @stoyo.bsky.social · 13/12/2025
“Anterior cingulate cortex”. As if that’s a real place. You can tell it’s fake because neurons aren’t red. #ThereIsOnlyInsula
110
Reposted by Stoyo
Yoav Livneh @yoavlivneh.bsky.social · 12/12/2025
lab preprint! Interopceptive predictions are central to many brain-body interactions theories, but it's unclear if/how they affect bodily physiology. We (fearless Einav Litvak et al) show that insular cortex predictions are essential for glucose homeostasis-THREAD.. www.biorxiv.org/content/10.6...
biorxiv.org
Insular cortex predictions regulate glucose homeostasis
Brain-body interactions are essential for physical and emotional homeostasis. The brain uses information from the external world to predict upcoming bodily changes. This process involves interoceptive...
37830
Stoyo @stoyo.bsky.social · 08/12/2025
We could try, but we would fail. I just don’t think that’s how brains work. Others will no doubt disagree.
000
Reposted by Stoyo
Mario Carta @mariocarta.bsky.social · 08/12/2025
New review out! 🔥🧊 We break down how rodents, primates & insects encode temperature in Nature Reviews Neuroscience. Paper: www.nature.com/articles/s41... View-only: rdcu.be/eThU1
nature.com
The neuronal circuits and cellular encoding of thermosensation - Nature Reviews Neuroscience
The thermosensory system across insects and mammals has shared principles of neuronal wiring and encoding. In this Review, Carta, Vestergaard and Poulet discuss how the nervous systems of insects and ...
15817
Reposted by Stoyo
The Transmitter @thetransmitter.bsky.social · 03/12/2025
In this episode of @braininspired.bsky.social, @engeltatiana.bsky.social discusses her modeling approach to discovering the connections between structure and function in the vast connectivity and activity patterns in the brain. #neuroskyence www.thetransmitter.org/brain-inspir...
thetransmitter.org
Tatiana Engel explains how to connect high-dimensional neural circuitry with low-dimensional cognitive functions
Neuroscientists have long sought to understand the relationship between structure and function in the vast connectivity and activity patterns in the brain. Engel discusses her modeling approach to…
03510
Stoyo @stoyo.bsky.social · 23/11/2025
Shaping that behavior would probably be tricky, but it’s conceivable that that some temporary top-down control could be accomplished by reusing the circuits that naturally suppress hunger at times of more urgent competing needs
010
Stoyo @stoyo.bsky.social · 23/11/2025
They can certainly turn the off temporarily. Recent example here: www.cell.com/neuron/fullt... Likewise hunger/thirst/fear can temporarily turn off pain: www.nature.com/articles/s41... Can they learn to turn these neurons through some act of volition? I would guess so
nature.com
A parabrachial hub for need-state control of enduring pain - Nature
Activity in a set of parabranchial neurons in the mouse brain is increased during chronic pain, predicts coping behaviour, and can be modulated by circuits activated by survival threats.
010
Reposted by Stoyo
Kevin Mitchell @wiringthebrain.bsky.social · 18/11/2025
Going against the gut: Q&A with yours truly on the autism-microbiome theory www.thetransmitter.org/spectrum/goi...
thetransmitter.org
Going against the gut: Q&A with Kevin Mitchell
A new review of 15 years of studies on the connection between the microbiome and autism reveals widespread statistical and conceptual errors.
092
Stoyo @stoyo.bsky.social · 18/11/2025
Caught your chat on DTG today - really great intro to the problems that can befall fields when they stumble on technology that offers very high-dimensional data. Thank you!
111
Stoyo @stoyo.bsky.social · 18/11/2025
Incidentally, you cite Jaqueline Crawley’s 20 year review in support of a point about the poor validity of such models, which is belied by the major takeaway she derives that review. Shank3 and BTBR KO models, as an example, have shown reliable profiles on tests of social behavior
010