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Andrej Bicanski

@andrejbicanski.bsky.social
230 followers 242 following 52 posts

Research group leader at MPI_CBS. Physicist turned neuroscientist (interests: too many, but mainly spatial cognition), sporadically on X/BSky.

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Andrej Bicanski @andrejbicanski.bsky.social · 22/09/2026
Now accepted and published --- with many thanks to the referees for helping sharpen the manuscript. Long time since the first notes. Good to see it officially out. www.cell.com/current-biol...
cell.com
A vector navigation and inference architecture can construct universal cognitive maps for abstract reasoning
Bicanski proposes an algorithm and neural mechanisms for the iterative construction of abstract cognitive maps via non-local inference. Map positions are triangulated and memorized by a set of extant ...
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Soledad Gonzalo Cogno @soledad-gcogno.bsky.social · 18/09/2026
📣 🔥 🤩 Our lab is recruiting a PhD student! If you want to do a PhD in computational neuroscience come and join us at the @kavlintnu.bsky.social ! 🧠 💻 For questions and info, the lab will be at Bernstein in a few days 😊 ⏰ Apply before October 11: www.jobbnorge.no/en/available...
jobbnorge.no
PhD in Computational Neuroscience (307990) | NTNU - Norwegian University of Science and Technology
Job title: PhD in Computational Neuroscience (307990), Employer: NTNU - Norwegian University of Science and Technology, Deadline: Sunday, October 11, 2026
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Nanthia Suthana @suthanalab.bsky.social · 16/09/2026
New tenure-track faculty position at Duke! The Neurobiology department is looking for a computational neuroscientist. Join a highly collaborative & interdisciplinary community. My time at Duke has been amazing so far & we would love the opportunity to collaborate with you! Applications due Dec 1.
academicjobsonline.org
Duke University, Neurobiology
Job #AJO32697, Tenure Track Assistant Professor - AI/ML Neurobiology, Neurobiology, Duke University, Durham, North Carolina, US
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Melanie Mitchell @melaniemitchell.bsky.social · 08/09/2026
Hey @ericlipton.nytimes.com 👋 AI is not “evolving” on its own. *People* are choosing how to build it. *People* are choosing how to train it. *People* are choosing how to run it. Maybe the problem is that they are the *wrong people* to make these choices.
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Andrej Bicanski @andrejbicanski.bsky.social · 07/09/2026
New Dentate Gyrus model by @vstudenyak.bsky.social !
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Viktor Studenyak @vstudenyak.bsky.social · 07/09/2026
New preprint from my PhD at MPI CBS 🧠, with @doellerlab.bsky.social and @andrejbicanski.bsky.social “A computational model of the two dentate gyrus blades” What mechanisms allow the two DG blades to support distinct coding regimes? (www.biorxiv.org/content/10.6...) 1/9
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Jieyu Zheng @jieyusz.bsky.social · 04/09/2026
How fast can mice learn complex mazes? With @mameister4.bsky.social we reveal memory, generalization, latent learning, and remote credit assignment of mice in the Manhattan Maze. Do mice born without a cortex or hippocampus have them too? Check it out! www.biorxiv.org/content/10.6...
biorxiv.org
Rapid spatial cognition in mice, with and without neocortex and hippocampus
Rapid learning, memory, and generalization are often attributed to circuits of the neocortex and hippocampus, but their specific role remains unclear. To examine these cognitive abilities together in ...
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Doeller Lab @doellerlab.bsky.social · 24/08/2026
🧠 Next Mind Meeting Talk! @suthanalab.bsky.social will give a talk titled: Neural Dynamics of Human Memory in the Real World. 🗓 August 27 | 3:00 PM 📍 In person (Zoom available) We look forward to seeing you!
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Andrew MacAskill @macaskillaf.bsky.social · 20/08/2026
Congrats @jespass.bsky.social on her new paper! PFC is widely thought to talk to HPC via nucleus reuniens - but no one has tested if this actual connectivity exists. Turns out it's wired to block it: PFC inputs to reuniens contact only neurons projecting back to PFC, not ones projecting to HPC. 🧪🧠📈
biorxiv.org
Nucleus reuniens is organised as parallel circuits rather than a prefrontal-hippocampal relay
Interactions between the prefrontal cortex (PFC) and hippocampus (HPC) are crucial for flexible and memory guided behaviour. Because there are no direct projections from PFC to HPC, it is widely presu...
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Andrej Bicanski @andrejbicanski.bsky.social · 17/08/2026
"...This exercise teaches us nothing about either animal ..." Useful precisely because absurd.
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John Tuthill @tuthill.bsky.social · 17/08/2026
Our digital sphinx, a cautionary tale about the interpretation of connectome-body models, is now a reviewed preprint at @elife.bsky.social. We are grateful to the reviewers for engaging seriously with what we hope is a useful (if absurd) demonstration. elifesciences.org/reviewed-pre...
elifesciences.org
The digital sphinx: Can a worm brain control a fly body?
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Doeller Lab @doellerlab.bsky.social · 14/07/2026
Join us at @mpicbs.bsky.social as a fully funded 4-year PostDoc (m/f/d) in Cognitive & Computational Neuroscience (Area: Functions of the Perirhinal Cortex). Excellent infrastructure with a leading scientific network. Apply by 17 August: recruitingapp-5218.de.umantis.com/Vacancies/44...?
recruitingapp-5218.de.umantis.com
Fully funded PostDoc Position (m/f/d) for 4 years in Cognitive and Computational Neuroscience (Area: Functions of the Perirhinal Cortex) - Doeller Lab | Karriereportal Max-Planck-Institut für Kogniti...
Fully funded PostDoc Position (m/f/d) for 4 years in Cognitive and Computational Neuroscience (Area: Functions of the Perirhinal Cortex) - Doeller Lab | Karriereportal Max-Planck-Institut für Kogniti...
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Neil Burgess @neilburgess10.bsky.social · 08/08/2026
Great to see Ellie Spens’ model out! Interplay btwn episodic (hippo) & semantic (neocort’l) systems, in encoding, consolidatn, recall & problem solving with sequential info, as compressive retrieval-augmented generation. Inc gist-based distortion in stories & inference www.nature.com/articles/s41...
nature.com
Hippocampo-neocortical interaction as compressive retrieval-augmented generation - Nature Communications
Here the authors model interactions between episodic and semantic memory as ‘retrieval-augmented generation’, explaining consolidation of structure from sequential experience, the reconstruction and d...
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Neuroskeptic @neuroskeptic.bsky.social · 28/07/2026
Errors or Adaptations? A Critical Review of Predictive Processing in Psychiatry pubmed.ncbi.nlm.nih.gov/42510237/ Hmmm...
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Ricard Solé @ricardsole.bsky.social · 19/07/2026
Why is reading so fundamental to the human mind? In this fascinating paper, @standehaene.bsky.social & Co show how literacy reshapes and connects the brain’s visual and language systems. A timely reminder of what education could lose if LLMs replace reading & writing. www.unicog.org/publications...
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Andrej Bicanski @andrejbicanski.bsky.social · 14/07/2026
Postdoc position on Perirhinal Cortex function in Leipzig!
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Doeller Lab @doellerlab.bsky.social · 04/06/2026
Join us at the Max Planck Institute in Leipzig as a fully funded 4-year postdoc position (m/f/d) in Cognitive and Computational Neuroscience (Area: Social Cognition). Excellent infrastructure with a leading scientific network. Apply by 13 July: recruitingapp-5218.de.umantis.com/Vacancies/44...?
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Caswell Barry @caswell.bsky.social · 23/06/2026
Really excited about this work with the awesome Will de Cothi & @shipleysj.bsky.social, out in Nature Reviews Neuroscience. We propose acetylcholine is an analogue of dopamine — tracking not reward prediction errors but state-transition prediction errors. doi.org/10.1038/s41583-026-01058-w
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Steve Fleming @smfleming.bsky.social · 20/06/2026
Get submitting to OpenMind!! Not a bad deal :-)
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Tim Viney @vineytj.bsky.social · 10/06/2026
New paper out in Current Biology. We define thalamic head direction (HD) cells based on the combination of neurochemical identity, physiology, sensorimotor responses, and connectivity, suggesting cell types. Great work led by Sara Hijazi and Shan Jiang from the lab. www.cell.com/current-biol...
cell.com
Diversity and sensorimotor specialization of head direction cells in the mouse thalamus
Hijazi and Jiang et al. identify distinct head direction (HD) cell subpopulations in the mouse anterodorsal thalamic nucleus, based on the combination of firing patterns, connectivity, and neurochemic...
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Roddy Grieves @roddy-grieves.bsky.social · 05/06/2026
Ever wonder how your brain navigates the real world? 🧠 Most spatial navigation studies use flat, 2D mazes. But the real world is hilly, irregular, and bumpy! ⛰️ Our new paper in #ScienceAdvances asked a simple question: How does the brain map uneven terrain? 📄 doi.org/10.1126/scia... 🧵👇️️️ 1/
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Andrej Bicanski @andrejbicanski.bsky.social · 05/06/2026
Great postdoc opportunity.
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Doeller Lab @doellerlab.bsky.social · 05/05/2026
🧠 Next Mind Meeting Talk! Jennifer Li and Drew Robson from the RoLi Lab at @mpicybernetics.bsky.social will give a talk titled: Uncovering the neural mechanisms of spatial cognition with behavior-aware autonomous microscopes.
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Andrej Bicanski @andrejbicanski.bsky.social · 02/05/2026
Been thinking about this topic for a while but never seen it expressed this well. Thank you @tonyzador.bsky.social 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.
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Kate Jeffery @katejj.bsky.social · 21/04/2026
Job alert! We are seeking a rodent in vivo electrophysiologist to work on coordination between anterior thalamus and hippocampus in rats using Neuropixels. Beautiful Scotland, leading university (Glasgow) and vibrant intellectual setting. Post is 23 months but hopefully extensible. Details here 👇
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Simon Kern @skjerns.de · 10/04/2026
Can we really measure replay in humans using MEG with current methods? In our most recent paper we simulated replay under realistic conditions via a novel hybrid approach with astonishing results. we're delighted that it has now been published @elife.bsky.social! elifesciences.org/articles/108...
cimh-clinical-psychology.github.io
TDLM-Resting-State Simulation
How sensitive is TDLM really? Can we actually find replay when we know it is present?
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Andrej Bicanski @andrejbicanski.bsky.social · 08/04/2026
New paper from the Neural Computation Group: "A theory of subicular function and generalized vector coding." by @ffeiwang.bsky.social. Link to preprint and a quick overview in Fei's short thread.
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Andrej Bicanski @andrejbicanski.bsky.social · 03/04/2026
New book on navigation (open access). The result of the Ernst Strüngemann Forum 2024. Was great to be there and discuss for a week with 50+ wonderful colleagues. Many thanks to the organizers, Julia Lupp + ESF team, the editors @noranewcombe.bsky.social, Ken Cheng link.springer.com/book/10.1007...
link.springer.com
Challenges in Navigation Research
This open access book explores navigation across species using a multidisciplinary approach to address challenges in research and clinical applications.
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Tommaso Patriarchi @tpatriarchi.bsky.social · 27/03/2026
Wait… localized norepinephrine transients in the awake visual cortex?! Who would have guessed this neuromodulatory signal is that spatially precise, right where visual processing is happening. Brain state control just got a lot more local. @ruedigersarah.bsky.social www.nature.com/articles/s41...
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Andrej Bicanski @andrejbicanski.bsky.social · 27/03/2026
"The digital sphinx produces highly realistic fly walking - yet it is biologically meaningless. This exercise teaches us nothing about either animal and exposes a core peril of connectome-body models: behavioral fidelity is achievable without biological fidelity..." www.biorxiv.org/content/10.6...
biorxiv.org
The digital sphinx: Can a worm brain control a fly body?
Animal intelligence is not purely a product of abstract computation in the brain, but emerges from dynamic interactions between the nervous system and the body. New connectome datasets and musculoskeletal models now enable integrated, closed-loop simulations of the neural and biomechanical systems of the fruit fly Drosophila, an ideal model organism to investigate embodied intelligence. However, many biological parameters of the nervous system and the body, as well as how they interface, remain unknown. To fill such gaps, researchers are turning to deep reinforcement learning (DRL), a data-driven optimization framework, to create virtual animals that imitate the behavior of real animals. Here, we provide a cautionary tale about the interpretation of such models. We constructed a virtual chimera of two phylogenetically distant species: a connectome of the C. elegans nematode worm and a biomechanical model of the fly body. The worm connectome receives sensory information from the fly body, and an artificial neural network is trained with DRL to map worm motor neuron activations to the fly's leg actuators. The resulting digital sphinx produces highly realistic fly walking - yet it is biologically meaningless. This exercise teaches us nothing about either animal and exposes a core peril of connectome-body models: behavioral fidelity is achievable without biological fidelity, making such models easy to overinterpret. Done carefully, virtual animals can be powerful partners to biological experiments, but only if their components and interfaces are grounded in biology. ### Competing Interest Statement The authors have declared no competing interest. NIH, U01NS136507, R01NS14543
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Matteo Guardamagna @matteoguardamagna.bsky.social · 11/03/2026
1/7 🧠 My journey into development begins with this work and question: how does the brain's spatial navigation system develop? We found that the neural networks for spatial navigation (tori and rings) are preconfigured and only later anchor gradually to the world with experience! 🧵
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Edvard I Moser @edvardmoser.bsky.social · 11/03/2026
Is spatial navigation innate 🧠? Using #NeuroPixels we show that the #torus 🍩 underlying the #GridCell map exists already on day 10 in rats — before pups open eyes and ears and before they start upright walking. 🧵1:4 👇 www.biorxiv.org/content/10.6...
biorxiv.org
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Andrej Bicanski @andrejbicanski.bsky.social · 09/03/2026
1/N: Dear cognitive map fans, I’d like to share a model I’ve been working on for a while (clearing backlog :). I show how a vector navigation architecture (VNA) and a “positional inference network” (PIN) can build Universal Cognitive Maps (UCMs) for abstract spaces. www.biorxiv.org/content/10.6...
biorxiv.org
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Andrej Bicanski @andrejbicanski.bsky.social · 09/03/2026
Now out in Hippocampus. Fei Wang‘s model of Trace Vector Cells and intra-subiculum processing, consistent with know effects in CA1. onlinelibrary.wiley.com/share/CPZPYM...
onlinelibrary.wiley.com
Dynamic Updating of Cognitive Maps via Traces of Experience in the Subiculum
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Hugo Spiers @hugospiers.bsky.social · 02/03/2026
Human hippocampal theta–gamma coupling coordinates sequential planning during navigation Impressive study from Dan Bush's Lab at UCL: www.pnas.org/doi/10.1073/...
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Adrian Duszkiewicz @adrian-du.bsky.social · 02/03/2026
Great new update on the subiculum circuits!
onlinelibrary.wiley.com
Non‐Canonical Subiculum Circuit Organization and Function
The subiculum is highly interconnected with the hippocampus, sub-regions of the thalamus, and the entorhinal and retrosplenial cortices. Together, these regions form a distributed network that plays ...
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Andrej Bicanski @andrejbicanski.bsky.social · 06/02/2026
Great to have @lukaskunz.bsky.social with next week! Looking forward to this.
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Roddy Grieves @roddy-grieves.bsky.social · 05/01/2026
Can humans & animals really use internal maps to take shortcuts? Tolman famously said yes - based largely on his Sunburst maze. Our new review & meta-analysis suggests evidence is far weaker than you might think. 🧵👇 doi.org/10.1111/ejn.... @uofgpsychneuro.bsky.social @ejneuroscience.bsky.social
doi.org
Tolman's Sunburst Maze 80 Years on: A Meta‐Analysis Reveals Poor Replicability and Little Evidence for Shortcutting
In 1946, Tolman et al. reported that rats could take a novel shortcut to a goal after training on an indirect route, supporting the Cognitive Map theory. However, a review of subsequent Sunburst maze...
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Janis Keck @keckjanis.bsky.social · 04/12/2025
New preprint! Have you ever wondered, what are these fuzzy simplicial sets, the theoretical framework behind e.g. UMAP? Here we show that you may simply see them as marginal distributions over simplicial sets. This provides a generative model for UMAP. (1/2) arxiv.org/abs/2512.03899
arxiv.org
Probabilistic Foundations of Fuzzy Simplicial Sets for Nonlinear Dimensionality Reduction
Fuzzy simplicial sets have become an object of interest in dimensionality reduction and manifold learning, most prominently through their role in UMAP. However, their definition through tools from alg...
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Nicholas Menghi @nichome.bsky.social · 02/12/2025
Our new paper, now published in @natcomms.nature.com , asks a simple question: when two tasks share a common structure, does the brain learn them more efficiently? Surprisingly, this was not the case. Thread below (1/7) rdcu.be/eSwvU
rdcu.be
The effects of task similarity during representation learning in brains and neural networks
Nature Communications - Here, the authors show learning tasks with similar structures can initially cause interference and slow down learning, but both the brain and artificial networks gradually...
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Andrej Bicanski @andrejbicanski.bsky.social · 01/12/2025
Dear colleagues, please check out this paper on aging and the HD system + gracefully degrading, biologically plausible HD attractor networks. Well done Matthieu!
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Aidan Horner @aidanhorner.bsky.social · 03/11/2025
I wrote a thing on episodic memory and systems consolidation. I hope you all enjoy it and/or find it interesting. A neural state space for episodic memories www.sciencedirect.com/science/arti... #neuroskyence #psychscisky #cognition 🧪
sciencedirect.com
A neural state space for episodic memories
Episodic memories are highly dynamic and change in nonlinear ways over time. This dynamism is not captured by existing systems consolidation theories …
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Hugo Spiers @hugospiers.bsky.social · 13/10/2025
Foraging in conceptual spaces: hippocampal oscillatory dynamics underlying searching for concepts in memory www.biorxiv.org/content/10.1...
biorxiv.org
Foraging in conceptual spaces: hippocampal oscillatory dynamics underlying searching for concepts in memory
How does the brain access stored knowledge? It has been proposed that conceptual search engages neurocognitive processes similar to foraging in physical space. We tested this idea using intracranial E...
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Nora Newcombe @noranewcombe.bsky.social · 07/10/2025
Thrilled to see this paper out! It's the culmination of a project begun in the depths of the pandemic with Sabrina Karjack and @zoengo.bsky.social . We continue our exploration of how children generalize when their episodic memory is not yet mature. www.nature.com/articles/s41...
nature.com
The dependence of children’s generalization on episodic memory varies with age and level of abstraction - Nature Communications
Children’s ability to generalize from episodic memories varies by both age and the level of abstraction. Here, the authors show that lower level generalization increasingly depends on episodic memory with age, whereas higher level generalization shows no such relationship.
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Doeller Lab @doellerlab.bsky.social · 06/10/2025
⏳ Deadline approaching! Apply by 13 Oct for the Postdoc in Cognitive Neuroscience at MPI Leipzig.
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Aidan Horner @aidanhorner.bsky.social · 06/10/2025
If you're interested in the cognitive neuroscience of memory feel free to email me! I do experimental psychology, brain imaging (fMRI and MEG) and a bit of modelling. Lab is doing stuff on forgetting, aging, schemas, and event boundaries, but we're not limited to that. #psychscisky #neuroskyence
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Max Planck Institute for Human Cognitive and Brain Sciences @mpicbs.bsky.social · 29/09/2025
🔎Wir suchen zum nächstmöglichen Zeitpunkt eine engagierte und kompetente Persönlichkeit für die Verwaltungsleitung (m/w/d) in Vollzeit | unbefristet | #Leipzig Bitte hier bewerben: recruitingapp-5218.de.umantis.com/Vacancies/43...? #wissenschaft #administration #career #maxplanck
recruitingapp-5218.de.umantis.com
Verwaltungsleitung (m/w/d) | Karriereportal Max-Planck-Institut für Kognitions- und Neurowissenschaften
Verwaltungsleitung (m/w/d) | Karriereportal Max-Planck-Institut für Kognitions- und Neurowissenschaften
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Helen Barron @helencbarron.bsky.social · 06/10/2025
** We have up to TWO funded PhD positions available in our lab!! Apply below to find new ways to enhance memory👇 Pls retweet ** Deadline: 2nd December 1. Cross-species closed-loopTMR: tinyurl.com/bddu4tp6 2. TUS and TMR in humans: tinyurl.com/jjws5ctj Happy to chat to interested applicants.
tinyurl.com
Enhancing memory using cross-species closed-loop Targeted Memory Reactivation | mrcbndu
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Andrej Bicanski @andrejbicanski.bsky.social · 03/10/2025
New preprint from the lab and great work by Fei Wang. We show how subiculum trace vector cells can be modeled consistent with known effects in CA1. Traces are driven by a mismatch learning rule to keep associative memories in line with experience. www.biorxiv.org/content/10.1...
biorxiv.org
Dynamic updating of cognitive maps via traces of experience in the subiculum
In the classical view of hippocampal function, the subiculum is assigned the role as the output layer. In spatial paradigms, some subiculum neurons manifest as so-called boundary vector cells (BVCs), ...
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