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Aniol Santo-Angles

@aniolet.bsky.social
406 followers 2.5K following 4 posts

Neuroscience. University of Helsinki.

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Dan Larremore @danlarremore.bsky.social · 25/08/2026
🎉 New paper (and data) on editorial & peer review at Science and Science Advances, two elite general science journals. With a wonderful team! @samzhang.bsky.social, @nicklaberge.bsky.social, Quinten and @aaronclauset.bsky.social. 1/ www.science.org/doi/full/10....
Screenshot of the title page: 

Elite general science journals shape scientific discourse, public policy, and scientific careers. However, expectations of confidentiality in most editorial proceedings has limited efforts to understand and improve the review process. Here, we describe and release deidentified data on 110,303 manuscript submissions over 5 years at Science and Science Advances, two elite general science journals. Analyzing evaluation dynamics across the initial editorial review and subsequent peer review stages, we find strong selective effects associated with higher institutional prestige, larger team size, and certain topics and countries. Corresponding authors who are men exhibit a small but significant advantage at Science, while authors based in China have a significant disadvantage. These associations are generally stronger in editorial review than in peer review, even as final editorial decisions correlate strongly with reviewer advice. These patterns highlight the complexity of multistage evaluations at elite journals and the importance of open data to better understand them.
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Jens-Bastian Eppler @j-b-eppler.bsky.social · 29/07/2026
As promised (and only slightly late 😅): here's a figure-by-figure walk-through of our preprint "Random network structure stabilizes neural manifolds". This one is a bit more for the nerds. For an overview version 👉 bsky.app/profile/j-b-... Preprint: doi.org/10.64898/202... 1/8 🧠🧪
doi.org
Random network structure stabilizes neural manifolds
Neuronal activity patterns change continuously over days and weeks, a phenomenon known as representational drift. Despite this, the geometric structure of population representations, namely the pairwise similarities between stimulus-evoked activity patterns, remains remarkably stable. How can ongoing changes in activity be consistent with stable representational similarity? We show that this is a generic consequence of random connectivity: in networks with random connectivity, output similarity is a monotonically increasing function of input similarity, independent of the specific connectivity pattern. Drift, whether driven by random synaptic turnover or Hebbian plasticity, merely transitions the network between random instantiations, leaving similarity intact. This extends to recurrent architectures and to deep neural networks, where continued training beyond performance saturation produces activity drift while preserving representational similarity. Although connectivity in the brain is not random, networks trained on high-dimensional inputs acquire connectivity that behaves statistically like a random projection, making these results broadly applicable to biological neural circuits. ### Competing Interest Statement The authors have declared no competing interest. Spanish Ministry of Science and Innovation, PCI2023-145967-2, PID2021-124702OB-I00 Spanish State Research Agency (AEI) – Severo Ochoa and María de Maeztu Program for Centers and Units of Excellence in R&D, CEX2020-001084-M German Research Foundation (DFG), FOR 5368 ARENA
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Imaging Neuroscience @imagingneurosci.bsky.social · 27/07/2026
New paper in Imaging Neuroscience by Rukuang Huang, Mark Woolrich, et al: MEG-GPT: A transformer-based foundation model for magnetoencephalography data doi.org/10.1162/IMAG...
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Casper Kerrén @ckerren.bsky.social · 24/07/2026
Excited to finally share our new paper in @natcomms.nature.com: Hippocampal ripples initiate cortical dimensionality expansion for memory retrieval www.nature.com/articles/s41... With @s-michelmann.bsky.social and @doellerlab.bsky.social
nature.com
Hippocampal ripples initiate cortical dimensionality expansion for memory retrieval - Nature Communications
How past experiences are reconstructed from memory remains unclear. Here the authors used intracranial EEG to show that hippocampal ripples reshape the geometry of cortical representations, supporting...
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Scott Marek @smarek0502.bsky.social · 11/06/2026
What matters most for childhood brain organization? We analyzed 649 variables. The answer: Socioeconomics (SES); with brain patterns pointing at sleep & stress as drivers. Even brain-IQ associations were better explained by SES. In Science today: www.science.org/doi/10.1126/...
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Catrina Hacker @catrinahacker.bsky.social · 05/01/2026
🚨 New preprint! Why do some insights from spikes translate to field potentials while others don't? In this paper we compare visual memory representations in spikes and LFPs to propose a general framework that answers this question. www.biorxiv.org/content/10.6... 🧵 (1/10) 🧠🟦 🧠💻
biorxiv.org
Neural representations of visual memory in inferotemporal cortex reveal a generalizable framework for translating between spikes and field potentials
Translating neurophysiological findings requires understanding the relationship between common measures of brain activity in animals (spiking activity) and humans (local field potentials, LFP). Prior ...
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Martin Hebart @martinhebart.bsky.social · 17/05/2026
I'm proud to say we are releasing LAION-fMRI, a densely sampled 7T fMRI dataset of natural images, with very broad stimulus sampling for testing countless hypotheses and for deeply exploring brain representations. The dataset is now available at laion-fmri.hebartlab.com What does LAION-fMRI offer? 🧵
laion-fmri.hebartlab.com
LAION-fMRI - a 7T fMRI dataset of human vision
LAION-fMRI (LfMRI / LAION MRI dataset): 5 subjects, 25,052 launch-release natural images, 165 acquired 7T fMRI sessions with single-trial GLMsingle betas, retinotopy, localizers, and diffusion.
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Daniel Anthes @anthesdaniel.bsky.social · 11/05/2026
Excited about our new preprint: “The illusory simplicity of the feedforward pass: evidence for the dynamical nature of stimulus encoding along the primate ventral stream” arxiv.org/abs/2604.12825 Work with Sushrut Thorat, Anna Mitola, Paolo Papale, Peter König & Tim Kietzmann 🧵 thread below
arxiv.org
The illusory simplicity of the feedforward pass: evidence for the dynamical nature of stimulus encoding along the primate ventral stream
In studying primate vision, a large body of work focuses on the first feedforward sweep. During this initial time window, information is thought to pass through ventral stream regions in a stage-like ...
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Stéphane d’Ascoli @sdascoli.bsky.social · 26/03/2026
🚨 We're very happy to introduce TRIBE v2: a foundation model of the brain's responses to sight, sound & language. 📄 Paper: ai.meta.com/research/pub... ▶️ Demo: aidemos.atmeta.com/tribev2/ 💻 Code: github.com/facebookrese... 🤗 Model: huggingface.co/facebook/tri...
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Runhao Lu | 陆润豪 @runhaolu.bsky.social · 08/04/2026
Code (python) is available at github: github.com/rl671/heterorc Should be readily applicable to your own EEG/MEG decoding pipelines! Great collaboration with @alexwoolgar.bsky.social @rhens.bsky.social , Sichao, Yanan, and John, during my time at @mrccbu.bsky.social & @theneuro.bsky.social ! (6/6)
github.com
GitHub - rl671/heterorc: HeteroRC: Decoding latent information from dynamic neural responses with interpretable heterogeneous reservoir computing
HeteroRC: Decoding latent information from dynamic neural responses with interpretable heterogeneous reservoir computing - rl671/heterorc
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Alina Studenova @studenova.bsky.social · 27/02/2026
How dynamics arise from the structure is my biggest interest. In this study, we started with a small step and asked how structure constrains dynamics. Spoiler: would that it were so simple… (1/6)
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SueYeon Chung @sueyeonchung.bsky.social · 10/02/2026
Our paper is out in @natneuro.nature.com! www.nature.com/articles/s41... We develop a geometric theory of how neural populations support generalization across many tasks. @zuckermanbrain.bsky.social @flatironinstitute.org @kempnerinstitute.bsky.social 1/14
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PessoaBrain @pessoabrain.bsky.social · 22/01/2026
𝗛𝗼𝘄 𝗱𝗼 𝗯𝗿𝗮𝗶𝗻 𝗮𝗿𝗲𝗮𝘀 𝗿𝗲𝗹𝗮𝘁𝗲𝗱 𝘁𝗼 𝗳𝘂𝗻𝗰𝘁𝗶𝗼𝗻? "High-resolution activity maps of PFC did NOT align with cytoarchitecturally defined subregions." Key tenet in neuroscience is that cytoarchitectonic boundaries correspond to functional ones. NB: study in the mouse #neuroskyence doi.org/10.1038/s415...
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Sam Gershman @gershbrain.bsky.social · 09/01/2026
With some trepidation, I'm putting this out into the world: gershmanlab.com/textbook.html It's a textbook called Computational Foundations of Cognitive Neuroscience, which I wrote for my class. My hope is that this will be a living document, continuously improved as I get feedback.
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Alexander Huth @alexanderhuth.bsky.social · 05/01/2026
My simulation is here if anyone wants to play with it: github.com/alexhuth/not...
github.com
notebook-sharing/bold-cmro2-cbf-r2.ipynb at master · alexhuth/notebook-sharing
Contribute to alexhuth/notebook-sharing development by creating an account on GitHub.
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Eiko Fried @eikofried.bsky.social · 05/01/2026
Would love to hear expert views on this paper. It appears to show that the operationalization of brain activity the field has relied on for 3 decades—the BOLD response—is not actually a sensible measure of brain activity. www.nature.com/articles/s41...
nature.com
BOLD signal changes can oppose oxygen metabolism across the human cortex - Nature Neuroscience
Using quantitative brain imaging, the authors show opposite fMRI BOLD signal to metabolic activity due to variable oxygen extraction across the human cortex. This questions the canonical interpretatio...
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Earl K. Miller @earlkmiller.bsky.social · 23/12/2025
A must-read review. It argues that brain areas are only one of several organizing principles and are not especially central, given their weak correspondence to function. Cytoarchitecture and connectivity are a starting point, not the endpoint. www.nature.com/articles/s41... #neuroscience
nature.com
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 in neuroscience from the ...
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David_Pascucci @davidpascucci.bsky.social · 22/12/2025
Happy to share our new paper in @nathumbehav.nature.com: t.co/Ciq7AKvle5. Using 500k+ behavioral trials, we show that #serialdependence deviates from #Bayesian predictions, pointing to a new narrative about how recent experience shapes perception. @aozkirli.bsky.social @achetverikov.bsky.social
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Itai Yanai @itaiyanai.bsky.social · 19/12/2025
Doing a PhD is - at heart - one long discussion with your mentor. The discussion changes over time - with unexpected turns and ups & downs - but through it all is a pair of people discussing a topic endlessly to make sense of it. PhD students: choose someone you like to talk to!
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Valentin Riedl @vavatin.bsky.social · 16/12/2025
fMRI signals “up,” but neural metabolism might be going “down.” In our @natneuro.nature.com paper, we demonstrate that about 40% of voxels with robust BOLD responses exhibit opposite oxygen metabolism, revealing two distinct hemodynamic modes. rdcu.be/eUPO8 funds @erc.europa.eu #neuroskyence 🧵:
BOLD signal changes can oppose oxygen metabolism across the human cortex, Nature Neuroscience
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Kartik Sreenivasan @sreenivasanlab.bsky.social · 11/12/2025
🚨 new preprint alert! biorxiv.org/content/10.1... what is the architecture of an individual working memory? 1/n
biorxiv.org
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Aniol Santo-Angles @aniolet.bsky.social · 10/12/2025
New preprint! 🎉 We investigate how the brain maintains multiple items in working memory, testing two competing hypotheses for sequential memory: neural subspaces vs. neural sequences. www.biorxiv.org/content/10.1...
biorxiv.org
Neural Subspaces Encode Sequential Working Memory, but Neural Sequences Do Not
The neural mechanisms of multiple-item working memory are not well understood. In the current study, we address two competing hypotheses about the neural basis of sequential working memory: neural sub...
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Grace Lindsay @neurograce.bsky.social · 17/11/2025
It is actually an incredibly frustrating time to be a theoretical neuroscientist right now imo, for this reason
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Nicole Rust @nicolecrust.bsky.social · 26/10/2025
To those who access published (nonhuman) neurophysiology data & analysis code: what’s your favorite place to find it?
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Giulio Bernardi @giuliobernardi.bsky.social · 16/10/2025
Colombo et al., Plos Biology, "Hemispherotomy leads to persistent sleep-like slow waves in the isolated cortex of awake humans" journals.plos.org/plosbiology/...
journals.plos.org
Hemispherotomy leads to persistent sleep-like slow waves in the isolated cortex of awake humans
Hemispherotomy is a neurosurgical procedure for treating refractory epilepsy by disconnecting a significant portion of the cortex. This study shows that the isolated cortex exhibits EEG patterns resem...
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Anne Carpenter @drannecarpenter.bsky.social · 10/10/2025
15 years in the making, we confirmed that mitochondria - the powerhouse of the cell - have an unusual localization in patients who experience psychosis (including schizophrenia and bipolar disorders). You’ll never guess what kind of patient cells we used to make this discovery… 🧵
mitochondria from bipolar patients are closer to the nucleus in these images; control patients' are spread out further
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Helen Czerski @helenczerski.bsky.social · 24/09/2025
It's never occurred to me that it IS an assumption. This is the most astonishing start to a paper I've read in years: "Living organisms are assumed to produce same-species offspring. Here, we report a shift from this norm in Messor ibericus, an ant that lays individuals from two distinct species."
nature.com
One mother for two species via obligate cross-species cloning in ants - Nature
In a case of obligate cross-species cloning, female ants of Messor ibericus need to clone males of Messor structor to obtain sperm for producing the worker caste, resulting in males from the same mother having distinct genomes and morphologies.
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Earl K. Miller @earlkmiller.bsky.social · 13/09/2025
Talk: Cognition is Emergent - Earl K. Miller Neuroscience and Philosophy Salon, 9-12-25 youtu.be/Sk4ehOcsDmM?...
youtu.be
"Cognition is emergent" by Earl Miller
YouTube video by Neuroscience & Philosophy Salon
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PessoaBrain @pessoabrain.bsky.social · 10/09/2025
Will try! But I'll say in advance that I view the mouse brain as very different. Their anatomical connectivity is very high, with almost the entire cortex interconnected. Something like 97% if the Kennedy figures are right. Experiments in primates and humans are needed but obvly cannot be done now.
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David G. Clark @david-g-clark.bsky.social · 25/08/2025
(1/26) Excited to share a new preprint led by grad student Albert Wakhloo, with me and Larry Abbott: "Associative synaptic plasticity creates dynamic persistent activity." www.biorxiv.org/content/10.1...
biorxiv.org
Associative synaptic plasticity creates dynamic persistent activity
In biological neural circuits, the dynamics of neurons and synapses are tightly coupled. We study the consequences of this coupling and show that it enables a novel form of working memory. In recurren...
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Juan Gallego @juangallego.bsky.social · 01/08/2025
🚨New paper🚨 Neural manifolds went from a niche-y word to an ubiquitous term in systems neuro thanks to many interesting findings across fields. But like with any emerging term, people use it very differently. Here, we clarify our take on the term, and review key findings & challenges rdcu.be/ex8hW
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Blake Richards @tyrellturing.bsky.social · 11/07/2025
1/3) This may be a very important paper, it suggests that there are no prediction error encoding neurons in sensory areas of cortex: www.biorxiv.org/content/10.1... I personally am a big fan of the idea that cortical regions (allo and neo) are doing sequence prediction. But... 🧠📈 🧪
biorxiv.org
Sensory responses of visual cortical neurons are not prediction errors
Predictive coding is theorized to be a ubiquitous cortical process to explain sensory responses. It asserts that the brain continuously predicts sensory information and imposes those predictions on lo...
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cait (and adonis) @cait.bsky.social · 05/06/2025
a friend of mine shared this ai-generated "emotion wheel" and unfortunately i have been laughing my ass off at it for like 15 minutes now. today i am feeling Fnliinneon
emotion wheel starting with "joy, fear, anger" in the center and then lapsing into gibberish
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Grace Lindsay @neurograce.bsky.social · 10/05/2025
Because we must build good things while we scream about the bad, I have started a "Data for Good" team @data-for-good-team.bsky.social that partners with organizations needing short-term data science help. We have three projects ongoing & will add more as our capacity grows. data-for-good-team.org
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Paul Thompson @ptenigma.bsky.social · 03/05/2025
Depressed individuals often experience a profound slowing/standstill of time. Northoff argues this is due to a desynchronization between “self-time” (inner) and “world-time” (external); inner sense of time becomes abnormally slow, making external events feel overwhelmingly fast or unmanageable. This
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Dileep George @dileeplearning @dileeplearning.bsky.social · 27/04/2025
It's kinda obvious. #AGIComics has already figured out which brain region is the most important. 😇
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Robert Rosenbaum @robertrosenbaum.bsky.social · 21/04/2025
High-Dimensional Dynamics in Low-Dimensional Networks. New preprint with a former undergrad, Yue Wan. I'm not totally sure how to talk about these results. They're counterintuitive on the surface, seem somewhat obvious in hindsight, but then there's more to them when you dig deeper.
screenshot of preprint title
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Manlio De Domenico @manlius.bsky.social · 10/04/2025
Functional organization derived from network-driven processes offers clear advantages wrt traditional methods when studying human brain networks, outperforming SoTA communication models in explaining functional communities from structural data. #Neuroscience 🧪🧠 www.pnas.org/doi/10.1073/...
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allen institute @alleninstitute.org · 09/04/2025
This data can also be accessed on the MICrONS Explorer – a growing portal for connectivity and functional imaging data. Dive into the data: www.microns-explorer.org/cortical-mm3 New to MICrONS? Check out these tutorials: tutorial.microns-explorer.org
microns-explorer.org
Cubic Millimeter — MICrONS Explorer
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T. Anderson Keller @andykeller.bsky.social · 10/03/2025
In the physical world, almost all information is transmitted through traveling waves -- why should it be any different in your neural network? Super excited to share recent work with the brilliant @mozesjacobs.bsky.social: "Traveling Waves Integrate Spatial Information Through Time" 1/14
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Sam Gershman @gershbrain.bsky.social · 15/02/2025
Is scientific intuition real? One definition: a scientist has good intuition if they design experiments which yield important results without necessarily being guided by an underlying theory. They "just know" what to do. I think a lot of what we call intuition is basically luck.
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Micah G. Allen @micahgallen.com · 12/02/2025
I found this to be an informative and provocative read - what happened to cognitive science? Authors argue, based on bibliometric and scientometric analysis, that cognitive science as a discipline is basically dead. www.nature.com/articles/s41...
nature.com
What happened to cognitive science? - Nature Human Behaviour
Núñez et al. use bibliometric and socio-institutional indicators to show that over the years, cognitive science has failed to transition to a mature, coherent, interdisciplinary field.
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David G. Clark @david-g-clark.bsky.social · 29/01/2025
(1/30) New preprint! "Symmetries and continuous attractors in disordered neural circuits" with Larry Abbott and Haim Sompolinsky bioRxiv: www.biorxiv.org/content/10.1...
biorxiv.org
Symmetries and Continuous Attractors in Disordered Neural Circuits
A major challenge in neuroscience is reconciling idealized theoretical models with complex, heterogeneous experimental data. We address this challenge through the lens of continuous-attractor networks...
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Miri Forbes @miriforbes.bsky.social · 02/02/2025
Not the biggest problem we're facing right now, but wow it's annoying that when this guy shares my work everyone tells him how brilliant he is and when I share it I get random dudes swinging by to tell me I can't do maths
A screenshot of a tweet by 'Nicholas Fabiano, MD' with lots of engagement describing a statistic I calculated with my dad (that there are >60 million ways that symptoms can be combined for the diagnosis of major depressive disorder) posted together with a figure I made, unrelated to the statistic (symptom repetition in the DSM-5).
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Ken Miller @kenmiller.bsky.social · 31/01/2025
New preprint: "The geometry of the neural state space of decisions", work by Mauro Monsalve-Mercado, buff.ly/42wVHD5. Surprising results & predictions! (Thread) We analyze neuropixel population recordings in macaque area LIP during a reaction time, random-dot motion 1/
Picture of neural manifolds for the two choices in a decision-making task, depicted in 3D and in 2D
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Grace Lindsay @neurograce.bsky.social · 24/01/2025
I wrote about the concept of agency (both human and artificial) in the year 2025. gracewlindsay.com/2025/01/24/2...
gracewlindsay.com
2025: Agency gained and lost
If you’ve had even a passing glance at tech journalism over the past few months, you know the top buzzword for AI in 2025 is agentic. Agentic AI (according to many think pieces and press releases a…
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Samuel Vaiter @samuelvaiter.com · 22/01/2025
The Marchenko–Pastur law describes the limiting spectral distribution of eigenvalues of large random covariance matrices. The theorem proves that as dimensions grow, the empirical spectral distribution converges weakly to this law. buff.ly/406Xaxg
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Carapanã @carapanarana.bsky.social · 21/01/2025
"saudação nazista? mas é só uma arte marcial alemã" - Elon Musk
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depths of wikipedia @depthsofwikipedia.bsky.social · 03/01/2025
in the article of former North Carolina Congressman Patrick McHenry:
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Santa Fe Institute @sfiscience.bsky.social · 19/12/2024
Today, the SFI Press published Vol. 4 of Foundational Papers in Complexity Science. This concluding book follows Volumes 1 & 2 in May and Volume 3 in September & contains papers published between 1989 and 2000 — when complex-systems science had become a fledgling field of study in its own right.
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