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Meike Hettwer

@meikehettwer.bsky.social
141 followers 147 following 2 posts

Post-doc at the MPI-cbs Leipzig

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Reposted by Meike Hettwer
Ted Satterthwaite @ted-satterthwaite.bsky.social · 02/10/2026
Check out our new fully processed test retest open data resource on myelin-sensitive imaging! Huge congrats to the amazing @stevenmeisler.com and @tsalo.bsky.social + a superb team.
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Reposted by Meike Hettwer
Brooke Sevchik @bsevchik.bsky.social · 20/08/2026
Very excited to announce that this work is now published in Scientific Data! doi.org/10.1038/s415...
doi.org
A longitudinal data resource to study brain development and transdiagnostic variation in executive function - Scientific Data
Scientific Data - A longitudinal data resource to study brain development and transdiagnostic variation in executive function
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Reposted by Meike Hettwer
Ted Satterthwaite @ted-satterthwaite.bsky.social · 07/07/2026
Awesome new work by @tsalo.bsky.social and @parkersingleton.bsky.social — a small but valuable test-retest dataset comparing single & multi-echo fMRI. Completely open + fully processed!!!!
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briana-mac.bsky.social @briana-mac.bsky.social · 07/05/2026
How much does the childhood environment shape the brain? In our new preprint, we study the exposome (300+ environmental exposures) and link it to white matter structure in 8,000+ kids. 🧠✨ 🔗 Read the preprint: bit.ly/4wfsybZ 🧵 Thread below
bit.ly
White matter reflects the childhood exposome
The childhood environment is critical for brain development. However, most neuroimaging studies examine individual environmental measures (e.g., socioeconomic status) or a limited set of exposures, obscuring how the combination of complex, real-world exposures jointly influence brain development. Here we investigated how white matter shape and tissue properties are linked to the childhood exposome, a multidimensional measure capturing over 300 environmental exposures. Using multi-shell diffusion MRI from 8,183 children (ages 9-10) in the ABCD study, we quantified microstructural and macrostructural properties across 62 person-specific white matter tracts. The exposome showed widespread and highly replicable associations with both white matter microstructure and macrostructure: more advantaged environments were associated with larger tract macrostructure and lower orientation dispersion. Principal component analysis revealed that the dominant axis of exposome-white matter covariation aligns with the cortical sensorimotor-association hierarchy, such that tracts spanning this hierarchy exhibit the strongest associations with the exposome. Multivariate models demonstrated that patterns of white matter features explained 25% of the variance in the exposome in unseen individuals. Notably, white matter-based prediction of cognition was markedly reduced after accounting for the exposome (~82% reduction in explained variance), indicating that brain-cognition associations overlap substantially with variance captured by the exposome. These findings generalized to independent data from the Healthy Brain Network (n=869), which differs substantially from ABCD in MRI acquisition, participant selection, and childhood environments. Together, these results suggest that white matter architecture strongly reflects the childhood environment. ### Competing Interest Statement A.A.B. has consulted for Octave Bioscience and holds equity in Centile Bioscience. RB is on the Advisory Board and holds equity in Taliaz Health. D.A.F. is a founder of Turing Medical. Any potential conflict of interest has been reviewed and managed by the University of Minnesota. D.A.F. is an inventor of the FIRMM Technology 2198 (FIRMM, real-time monitoring and prediction of motion in MRI scans, exclusively licensed to Turing Medical). Any potential conflict of interest has been reviewed and managed by the University of Minnesota. This research was supported by funding from the National Institutes of Health (T32MH019112 to S.L.M.; R37MH125829 to D.A.F. and T.D.S.; 2R01MH112847 to R.T.S. and T.D.S.; R01MH120482 to T.D.S.; 2R01MH113550 to T.D.S.; R01MH123550 to R.T.S; F30MH138048 to K.Y.S.; RF1MH121868, RF1MH121867, RF1MH126699, R01AG060942, U19AG066567, R01EY033628, and R01EB027585 to A.R.; R01MH134886 to R.B.; T32MH016804 and T32MH018951 to V.J.S; R01MH133843 to A.A.B.; F31MH136685 to J.B.). S.L.M. was supported by the Hartwell Foundation (S.L.M.); G.S. was supported by a postdoctoral fellowship from the Canadian Institutes of Health Research (CIHR). A.S.K. is supported by a NARSAD Young Investigator Award from the Brain and Behavior Research Foundation. M.D.H. was supported by the German Research Foundation (project number 572317568). LMS was supported by a NSF SBE Postdoctoral Research Fellowship (#2507497).
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Paul Thompson @ptenigma.bsky.social · 27/04/2026
🔥 At next week's ENIGMA Day in New York, we'll plan out an AI challenge for large-scale differential diagnosis of 20+ brain diseases w/ multimodal data (sMRI, DTI, rsFMRI) comparing low- v high-capacity AI models [1]. 🔥Come catch up @ENIGMA's NYC meet-up on Wed night! :) [1] arxiv.org/abs/2604.17581
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Reposted by Meike Hettwer
Brooke Sevchik @bsevchik.bsky.social · 08/04/2026
🍄 Our new living systematic review and meta-analysis on MDMA for PTSD is now live on medRxiv. Here's what we found and how we built upon our open science infrastructure to support it 🧵 www.medrxiv.org/content/10.6...
medrxiv.org
A living systematic review, meta-analysis, and open data resource of trials of MDMA-assisted therapy for PTSD
3,4-methylenedioxymethamphetamine (MDMA) has emerged as a potential treatment for post-traumatic stress disorder (PTSD), generating considerable enthusiasm in the field. However, rapidly changing evid...
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Reposted by Meike Hettwer
Audrey Luo @audreycluo.bsky.social · 02/03/2026
We think of white matter as the highways of the brain. But when we followed development along those highways, we were surprised. The journey is more complex than we thought. My final PhD paper, “Two Axes of White Matter Development”, is now out in @natcomms.nature.com! 🛣️🧠✨ 🔗 bit.ly/wm2axes
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Ted Satterthwaite @ted-satterthwaite.bsky.social · 13/11/2025
Superb work by the stellar @bsevchik.bsky.social — a new fully processed open data resource focused on exec fxn in psychosis and ADHD. ‼️Also‼️ Brooke is applying to PhD programs now— great time to recruit an absolute star ⭐️ + wonderful human.
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Sofie Valk @sofievalk.bsky.social · 28/08/2025
rdcu.be/eCVaQ Neurodevelopmentally rooted epicenters in schizophrenia: sensorimotor-association spatial axis of cortical thickness alterations - bravo Yun Shuang Fan and team 😍🌸
rdcu.be
Neurodevelopmentally rooted epicenters in schizophrenia: sensorimotor-association spatial axis of cortical thickness alterations
Molecular Psychiatry - Neurodevelopmentally rooted epicenters in schizophrenia: sensorimotor-association spatial axis of cortical thickness alterations
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Meike Hettwer @meikehettwer.bsky.social · 25/08/2025
The end of a PhD journey 🎓 What a ride - full of lovely people, exciting science, coding tunnels, coffee-brainstorms & amazing conferences! Whole-hearted thank you to all who shared the journey & celebrated with me - especially @sofievalk.bsky.social, @sbe.bsky.social &@mps-cognition.bsky.social 💐🥳❤️
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Max Planck School of Cognition @mps-cognition.bsky.social · 15/08/2025
Since July 21st, we have a good reason to celebrate the summa cum laude Defense of the newly minted Dr. Hettwer who received her PhD from @hhu.de under the supervision of Prof. Simon Eickhoff @sbe.bsky.social with strongest support of Dr. Sofie Valk! Congratulations Meike!!!🥂👏🏻🥁🎊
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Amin Saberi @amnsbr.bsky.social · 05/06/2025
🧠⚖️📉 How does the cortical excitation-inhibition ratio mature during adolescence? We asked this in our new paper just out in #ScienceAdvances ✨ “Adolescent maturation of cortical excitation-inhibition ratio based on individualized biophysical network modeling” 📄 www.science.org/doi/full/10.... 🧵⤵️
science.org
Adolescent maturation of cortical excitation-inhibition ratio based on individualized biophysical network modeling
Individualized simulations reveal a decrease in excitation-inhibition ratio in association areas throughout adolescence.
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Reposted by Meike Hettwer
Sara Larivière @saratheriver.bsky.social · 04/05/2025
My lab has two fully funded MSc/PhD positions available! * Cool research on neuroimaging, epilepsy, and brain development ⚡️ * Located in a brand new building with lots of natural light 🌱 * Worldwide collaborations 🤝🏼 * Fun and inclusive environment 🤩 Learn more and apply 👉🏼 slic-lab.github.io
slic-lab.github.io
Sherbrooke Laboratory for Integrative Connectomics | SLIC
Exploring cutting-edge research in neuroimaging, epilepsy, brain development, and so much more!
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Reposted by Meike Hettwer
Audrey Luo @audreycluo.bsky.social · 20/03/2025
We think of white matter as the brain's highways—uniform conduits between cortices. But what if we study development along tracts? Turns out the journey matters as much as the cortical destination! We're thrilled to share “Two Axes of White Matter Development” www.biorxiv.org/content/10.1... 1/n
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Rosanne Rademaker @rademaker.bsky.social · 17/03/2025
Are short-term memories just noisier versions of what we perceive? Are they fundamentally different? We (Chaipat Chunharas, @mjwolff.bsky.social, @meikehettwer.bsky.social and myself) delved into this in a paper out now in #elife: elifesciences.org/reviewed-pre.... For a quick summary, a 🧵 below:
media.tenor.com
a black and white image of the inside of a human brain
ALT: a black and white image of the inside of a human brain
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Reposted by Meike Hettwer
bioRxiv Neuroscience @biorxiv-neursci.bsky.social · 26/02/2025
Reproducible Brain Charts: An open data resource for mapping brain development and its associations with mental health www.biorxiv.org/content/10.1101/202…
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Reposted by Meike Hettwer
Alexandra John @johnalexandra.bsky.social · 07/02/2025
For all the thalamus lovers❤️‍🔥 : Excited to share that our Paper is out now✨Huge thanks to @sofievalk.bsky.social and all collaborators @meikehettwer.bsky.social, @wanb.bsky.social, @amnsbr.bsky.social, @jroyer.bsky.social, @borismontreal.bsky.social, @linaschaare.bsky.social, Seyma Bayrak
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