Amin Saberi
@amnsbr
Postdoc, Neurobiosocial Group @MPI_CBS & @fzj_inm7 | Medical graduate
(1/17) Now out on bioRxiv‼️Reproducible Brain Charts: An open data resource for mapping brain development and its associations with mental health | doi.org/10.1101/2025.0… Funded by @NIMHgov
Reproducible Brain Charts: An open data resource for mapping brain development and its associations with mental health biorxiv.org/content/10.110… #biorxiv_neursci
Our (@k__manoli @INM7_ISN @amnsbr @sofievalk) study mapping the cerebellar behavioural topography & introducing a cerebellum-adapted method of activation likelihood estimation (ALE), is out now on bioRxiv! Find it here: doi.org/10.1101/2024.1…. A thread 🧵 1/18
Balance of neurons in the #brain changes with #age - @amnsbr & @sofievalk & Simon Eickhoff @fz_juelich focused on balance within #neuronal circuits cause it supports cognitive processing & can be altered in #schizophrenia and #autism, @ScienceAdvances: tinyurl.com/yc8dfzns
While the world burns, we cook up a new preprint! doi.org/10.1101/2025.0… Biophysical modeling is a key tool to derive mechanistic insights into the brain. These models are governed by biologically meaningful parameters (unlike deep neural nets), but the dirty secret ... 1/N
Very proud to share my latest work with the netneurolab, now out in @ScienceAdvances! 🐒🧠 🧬 Translational neuroscience from macaque gene expression, within + across species
Benchmarking macaque brain gene expression for horizontal and vertical translation | science.org/doi/10.1126/sc… Led by @loopyluppi in @ScienceAdvances How useful is macaque brain gene expression for asking questions about macaque protein abundance and human gene expression? ⤵️
🚀 Introducing FastDMF: A groundbreaking tool for whole-brain modeling! 🧠 🔍 Efficient, accessible implementation of the Dynamic Mean Field (DMF) model. ⚡Scaling up to 1,000 brain regions. Unlocks biophysically grounded insights into brain dynamics. direct.mit.edu/netn/article/8…
Thrilled to share my latest work "Microstructural asymmetry in the human cortex" now out in @NatureComms. This work used cytoarchitecture (BigBrain), T1w/T2w, qT1, and MT measures to bring the cortical asymmetry from macrostructure to microstructure. nature.com/articles/s4146…
Since our method involves many permutations, @amnsbr created a fast GPU-implementation of NiMARE-based ALE and C-SALE, that can speed up typical analyses ~100x, reducing analysis time from hours to minutes. We share this recourse openly at: github.com/amnsbr/nimare-…. 9/18