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Yourong Guo

@yrguo.bsky.social
39 followers 59 following 9 posts
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Emma Robinson @OHBM 2026 @metricsemma.bsky.social · 11/06/2026
MeTrICS lab are at #OHBM 2026; largely our growing focus these days is towards mechanistic modelling the mechanisms of cortical folding and dynamics as a means to tailor predictions of outcomes towards individual cases. Posters in comments below:
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Reposted by Yourong Guo
Lianglong Sun @longonga.bsky.social · 04/04/2025
Happy to share that our article “Human lifespan changes in the brain’s functional connectome” is now published online at Nature Neuroscience @natureneuro.bsky.social ! Many thanks to all collaborators & data contributors, and the editor team & reviewers! www.nature.com/articles/s41...
nature.com
Human lifespan changes in the brain’s functional connectome - Nature Neuroscience
Sun et al. report human lifespan changes in the brain’s functional connectome in 33,250 individuals, which highlights critical growth milestones and distinct maturation patterns and offers a normative...
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Yourong Guo @yrguo.bsky.social · 09/03/2025
A huge thanks to all my amazing coauthors, especially @metricsemma.bsky.social 😊 🔗 Read the full paper: www.biorxiv.org/content/10.1... 9/9
biorxiv.org
Motifs of brain cortical folding from birth to adulthood: structural asymmetry and folding-functional links
Cortical folding of brain is widely regarded as an interplay between genetic programming and biomechanical forces, closely linked to cytoarchitectonic regionalisation. Abnormal folding patterns are fr...
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Yourong Guo @yrguo.bsky.social · 09/03/2025
We’ve long sought to understand how genetic and biomechanical forces shape cortical folding, and how that relates to actual functional areas. Hopefully, this work takes a small step toward deeper understanding. 8/9
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Yourong Guo @yrguo.bsky.social · 09/03/2025
Folding-Function links? Aligning individual HCP task functional activation maps & multi-modal parcellations (Glasser, M. F. et al) using MSM-HT, we find that better structural alignment did not improve functional overlap. 7/9
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Yourong Guo @yrguo.bsky.social · 09/03/2025
Cortical folding motifs are heritable. Using MZ and DZ twins data from the HCP young adults, we found motifs co-occurred more frequently in MZ siblings than DZ across all lobes. 6/9
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Yourong Guo @yrguo.bsky.social · 09/03/2025
Neonates vs. Adults: What changes? We observed consistency across both age groups, with neonatal samples showing less variation. However, rightward-asymmetric folding clusters had greater temporal lobe surface area than leftward - reversed in adults. 5/9
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Yourong Guo @yrguo.bsky.social · 09/03/2025
Greater asymmetry in the temporal lobe. A higher proportion of temporal lobe clusters were leftward-asymmetric compared to other lobes. These motifs showed more anatomical heterogeneity than rightward ones, including interruptions and branching of the superior temporal sulcus. 4/9
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Yourong Guo @yrguo.bsky.social · 09/03/2025
Disentangling natural cortical shape variability from clinically relevant features starts with better characterizing its scale across large populations. Here, we introduce MSM-HT to parse cortical folding variability into a representative family of distinct anatomical motifs. 3/9
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Yourong Guo @yrguo.bsky.social · 09/03/2025
🧠 What shapes cortical folding? Cortical folding is widely regarded as an interplay between genetic programming and biomechanical forces. Abnormal folding patterns are frequently observed in neurodevelopmental conditions and psychiatric disorders. 2/9
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Yourong Guo @yrguo.bsky.social · 09/03/2025
I'm very excited to share my PhD work "Motifs of brain cortical folding from birth to adulthood: structural asymmetry and folding-functional links". We identified and characterised the lobe-wise folding patterns using both 1110 young adults (HCP) and 781 term-age neonates (dHCP & BIBS studies). 1/9
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