Roselyne Chauvin

@roselynechauvin.bsky.social

Post doc at DosenbachLab, Washington university in st louis. previously Donders Institute - Task & Rest fMRI - children development - brain plasticity CogniJunior founder/illustrator - OHBM com committee

Starting puberty changes the brain and that start timing matters. At 9-11 years old, girls are already experiencing these changes strongly.

Nasia Metoki@nasiametoki.bsky.social · 2mo ago

Excited to share our new preprint “Functional brain network correlates of pubertal timing and depressive symptoms in preadolescence” doi.org/10.64898/2026.05.22.727009 We examined how pubertal timing relates to whole-brain functional connectivity and depression risk in >9,000 youth (ABCD Study)

Proud of this team for this multidimensional tour de force! By decoding EEG signal, we show that the brain handles competing distractors through rapid dimension-specific modulation based on a multivariate conflict signal. More in @davideghez.bsky.social's 🧵. Paper: doi.org/10.1101/2025.11.16.688701

Reactive suppression of distractor representations resolves multidimensional interference

Navigating competing attentional demands is a core cognitive function, yet how the brain tunes control in multidimensional environments remains poorly understood. Here, we used a multidimensional task-set interference paradigm in which participants attended to one of four stimulus dimensions while three others acted as distractors, combining multivariate decoding, representational similarity analysis, and encoding models applied to human EEG. Targets and distractors were initially encoded in parallel, but distractor representations were rapidly suppressed ~250 ms after stimulus onset, with suppression scaling with each distractor's own conflict history. Neither trial-to-trial adaptation nor block-level learning produced anticipatory changes in task-relevant representations. Instead, proactive control modulated the speed and efficiency of stimulus-triggered suppression. Encoding models further revealed that conflict is represented in orthogonal, dimension-specific subspaces that eventually collapse onto a shared conflict signal. These results show that multidimensional attentional control operates through selective, reactive suppression of distractor representations, guided by a structured multivariate conflict signal. ### Competing Interest Statement The authors have declared no competing interest. McDonnell Center for Systems Neuroscience Office of Naval Research / Department of Defense (ONR/DoD) grant, N00014-23-1-2792

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Davide Gheza@davideghez.bsky.social · 3mo ago

New preprint! Last year we showed humans adapt attention in a dimension-specific way when multiple things compete for attention. Now we read out the neural dynamics of this adaptation. doi.org/10.1101/2025.11.16.688701 w/ @mikefreund.bsky.social @theazalabak.bsky.social @wouterkool.bsky.social

GastroPy is now out in early beta! Please to share our Python toolbox for electrogastrography and stomach-brain coupling analyses. It includes tools for cleaning, visualising, and analysing EGG data, plus fMRI stomach-brain coupling workflows. Docs, code, and preprint below. osf.io/preprints/ps...

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It's pi day 3.14 ... I don't know any of the other digits but Nelson Dellis knows 10,000 of them Read how he does it doi.org/10.64898/202... And then read how you can do it too with his upcoming book "Everyday genius: Hacks to Boost Your Memory, Focus, Problem-Solving, and Much More"

Brain organization of a memory champion

Memory athletes can achieve superior performance (e.g., memorizing 339 digits in 5 minutes) with extensive daily training, by converting abstract information into vivid scenes, and placing them along a mental path, that is later retraced (Method of Loci). Understanding the brain mechanisms underlying such training-derived mastery would increase our understanding of the brain's memory systems and could suggest novel approaches to improving cognition in other domains. As memory athletes use personalized training techniques, it has been challenging to study them with standard group paradigms. Fortunately, precision functional mapping (PFM) enables detailed investigation of individual brains through repeated sampling of resting-state functional connectivity and task fMRI. Here, we precisely mapped the brain organization of a 6-time U.S. Memory Champion (>13 hours fMRI). Relative to controls, the Memory Champion's network functional connectivity (FC) was strengthened with the retrosplenial, extrastriate visual, and dorsal frontal cortex (area 55b), as well as with the caudate nucleus. The Memory Champion had modules related to scene and semantic processing not seen in controls, alongside stronger connectivity between the caudate and classical memory networks. During rote memorization, the Champion's task fMRI patterns were typical, with the hippocampus active during encoding. This pattern was reversed when he used his Method of Loci technique, with greater hippocampal activity during recall than encoding. Hence, intense practice at converting abstract information into more memorable formats can develop a procedural memory skill that utilizes brain regions typically reserved for navigation, language, social cognition, and associative learning. ### Competing Interest Statement E.M.G. may receive royalty income based on technology developed at Washington University School of Medicine and licensed to Turing Medical Inc. N.U.F.D. has a financial interest in Turing Medical Inc. and may benefit financially if the company is successful in marketing Framewise Integrated Real-Time Motion Monitoring (FIRMM) software products. N.U.F.D. may receive royalty income based on FIRMM technology developed at Washington University School of Medicine and Oregon Health and Sciences University and licensed to Turing Medical Inc. N.U.F.D. is a co-founder of Turing Medical Inc. TOL is a consultant for Turing Medical Inc. TOL holds a patent for taskless mapping of brain activity licensed to Sora Neurosciences and a patent for optimizing targets for neuromodulation, implant localization, and ablation is pending. These potential conflicts of interest have been reviewed and are managed by Washington University School of Medicine. The other authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper. NIH, NS140256 (E.M.G.), NS123345 , NS098482 (B.P.K.),MH129616 (T.O.L.), T32DA007261 (S.R.K), MH096773 (N.U.F.D.), MH122066 (N.U.F.D., E.M.G.), MH121276 ( N.U.F.D. , E.M.G.), MH124567 ( N.U.F.D. , E.M.G.), NS129521 (N.U.F.D. , E.M.G.), NS088590 (N.U.F.D.), S10OD025200, 1S10RR022984-01A1 and 1S10OD018091-01 (The Washington University Research Computing and Informatics Facility) The Taylor Family Foundation The Intellectual and Developmental Disabilities Research Center The Washington University Hope Center for Neurological Disorders Mallinckrodt Institute of Radiology The Kiwanis Foundation The McDonnell Center for Systems Neuroscience Brain & Behavior Research Foundation, https://ror.org/03a63f080

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Roselyne Chauvin@roselynechauvin.bsky.social · 5mo ago

The 6x US memory champion – Nelson Dellis – can memorize a deck of cards in 40 seconds and knows the first 10K digits of pi. To figure out how, he let us peak inside his brain. Here is what we learned in our precision brain mapping study www.biorxiv.org/content/10.6... youtube.com/shorts/MryMq...

How can someone train their brain to have not just improved performance, but to have unbelievable, superhuman performance? You have to hijack a brain system used for something people do very well (remembering stories) and trick it into helping with tasks we don't do well (remembering numbers).

Roselyne Chauvin@roselynechauvin.bsky.social · 5mo ago

The 6x US memory champion – Nelson Dellis – can memorize a deck of cards in 40 seconds and knows the first 10K digits of pi. To figure out how, he let us peak inside his brain. Here is what we learned in our precision brain mapping study www.biorxiv.org/content/10.6... youtube.com/shorts/MryMq...

🚨 New preprint: Objective Quality Assessment for Precision fMRI Precision functional mapping (PFM) enables individual-level brain network studies — but demands more, and better, data. We introduce an objective framework to determine when a dataset truly supports interpretable, replicable PFM.

Such a fascinating paper! Less than 3 years after the discovery of the new motor network (SCAN) interleaved between effector motor regions, SCAN is proving highly relevant for Parkinson’s! It offers potential to improve treatment and reduce symptoms non-invasively.

Jianxun Ren@jianxunren.bsky.social · 6mo ago

Happy to share a short but super cool video that gives a quick overview of our Nature paper on the somato-cognitive action of netwokr in Parkinson's disease www.nature.com/articles/s41...