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Audrey Luo

@audreycluo.bsky.social
696 followers 342 following 48 posts

MD/PhD Candidate @PennMedicine studying functional connectivity & white matter development at PennLINC 🧠 previously @Yale

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Reposted by Audrey Luo
Valerie Jill Sydnor @valeriejsydnor.bsky.social · 02/09/2026
I am oh so happy to share that my K99/R00 "Linking Adolescent Environmental Enrichment to Association Cortex Plasticity and Psychiatric Resiliency" was awarded by the NIMH! And with that, I am on the job market! I can't wait to find the home of my future lab.
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Audrey Luo @audreycluo.bsky.social · 05/09/2026
YESSS CONGRATULATIONS VAL!!! 🎉🎉🎉
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Joëlle Bagautdinova @joelleba.bsky.social · 01/09/2026
Thrilled to share that this work is now published in Nature Human Behavior!!! 🥳🎉 doi.org/10.1038/s415...
doi.org
Anatomical white matter tracts span the cortical hierarchy to support cognitive diversity - Nature Human Behaviour
Bagautdinova et al. study how white matter tracts are organized along the brain’s hierarchy and how they connect diverse biological environments to support complex human cognition and neurodevelopment.
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Maria Jalbrzikowski @mjalbrzikowski.bsky.social · 15/06/2026
Amazing talk at #OHBM2026! Wow 🤯
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Audrey Luo @audreycluo.bsky.social · 15/06/2026
Thanks for coming!
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Scott Marek @smarek0502.bsky.social · 11/06/2026
What matters most for childhood brain organization? We analyzed 649 variables. The answer: Socioeconomics (SES); with brain patterns pointing at sleep & stress as drivers. Even brain-IQ associations were better explained by SES. In Science today: www.science.org/doi/10.1126/...
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Xiaoyu Xu @xiaoyuxuu.bsky.social · 26/05/2026
White matter tracts form the structural foundation of brain networks, yet how structural connectivity develops across the whole connectome remains unclear. In our recent @natcomms.nature.com article, we report a continuous, robust developmental pattern along the S-A connectional axis.😁
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Valerie Jill Sydnor @valeriejsydnor.bsky.social · 02/06/2026
Happy to see this paper from @xiaoyuxuu.bsky.social and @zaixucui.bsky.social out on how the development of structural connectivity aligns with the sensorimotor-association axis www.nature.com/articles/s41...! Exciting convergence with work from @audreycluo.bsky.social www.nature.com/articles/s41...
nature.com
Mapping the spatiotemporal continuum of structural connectivity development across the human connectome in youth - Nature Communications
This study identifies a spatiotemporal continuum of structural connectivity development along the sensorimotor-association connectional axis during youth and further demonstrates its implications in b...
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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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Golia Shafiei @goliashf.bsky.social · 14/04/2026
✨Excited to share that our new preprint, "Mapping developmental patterns of intrinsic timescale", is now available on bioRxiv!! 📚 doi.org/10.64898/202...
doi.org
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Steven Meisler @stevenmeisler.com · 19/04/2026
Diffusion MRI (dMRI) is a powerful tool to study white matter maturation. In our new preprint, we process and distribute a new resource of >24,000 ABCD dMRI scans using open source tools! We then evaluate how methods shape inferences about development. 🔗 www.biorxiv.org/content/10.6...
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Ted Satterthwaite @ted-satterthwaite.bsky.social · 02/03/2026
Beyond delighted to see this awesome paper from superstar Audrey Luo now out. See her wonderful thread below re: two highly-replicable axes of white matter development in youth.
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Valerie Jill Sydnor @valeriejsydnor.bsky.social · 02/03/2026
3 datasets! 2 axes! 1 beautiful piece of developmental science from @audreycluo.bsky.social
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Toomas Erik Anijärv @teanijarv.bsky.social · 02/03/2026
I couldn't find a tool to plot different #neuroimaging data in one consistent style, so I made one! Meet yabplot (yet another brain plot) - a #Python package for (sub)cortex & tracts.🧠 - Simple API - Built-in atlases - Custom atlas support 🔗 github.com/teanijarv/ya... (drop a ⭐️!)
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
With deep gratitude to my PhD adviser who made this work possible @ted-satterthwaite.bsky.social!! 🙌
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
@ariellekeller.bsky.social @bart-larsen.bsky.social @apmackey.bsky.social Michael P Milham David R Roalf @goliashf.bsky.social Russell T Shinohara Leah H Somerville Sarah M Weinstein @jyeatman.bsky.social @cieslakmatt.bsky.social @arokem.org
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
So grateful for my coauthors @stevenmeisler.com @valeriejsydnor.bsky.social @aarona-b.bsky.social @joelleba.bsky.social Deanna M Barch @danisbassett.bsky.social Christos Davatzikos Alexandre R Franco Jeff Goldsmith Raquel E Gur Ruben C Gur Fengling Hu @marcjaskir.bsky.social Gregory Kiar
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
📍For me, the big takeaway is this: the assumptions we make shape the questions we ask. Treat tracts as uniform highways, and they look uniform. Look along them instead, and striking, replicable patterns emerge. We hope this work advances how we study brain development. 12/n
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
Our findings align with evidence that deep WM myelinates early in infancy bit.ly/infwm, potentially reducing electrical crosstalk and stabilizing signal transmission. The protracted, hierarchical maturation of superficial tract regions may help fine-tune neural timing. 11/n
bit.ly
White matter myelination during early infancy is linked to spatial gradients and myelin content at birth - Nature Communications
Myelination in early infancy develops at different rates. Here the authors describe this process whereby the back and top of the brain, as well as sections that are least mature at birth develop the f...
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
Lastly, we zoomed out: what’s the overall pattern of superficial tract development — where the developmental drama happens? Tract ends near sensorimotor cortex mature earlier; those near association cortex mature later. Our second axis: Sensorimotor ➡️ Association. 10/n
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
So we tested whether tracts with larger differences in S-A rank between endpoints also show greater differences in maturation age. 🥁 And they do! Development of superficial tract regions follows the cortical hierarchy. 9/n
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
A tract’s endpoints clearly matter. But how? The IFOF’s frontal and occipital ends sit at opposite poles of the brain’s sensorimotor-association (S-A) axis. We thought: if a tract connects regions far apart on this axis, its two ends might develop differently. 8/n
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
But for the IFOF, the two ends diverged. The occipital end matured by mid-adolescence, while the frontal end continued developing beyond our studied age window. 🤯 Even within a *single* tract, the two ends can develop very differently. 7/n
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
For the motor segment of the corpus callosum, the right and left ends of the tract showed very similar developmental patterns, maturing around the same time. ✅ 6/n
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
But not all tracts are created equal. Some connect similar cortical regions (e.g. motor segment of the corpus callosum). Others link very different parts of the brain (e.g. the inferior fronto-occipital fasciculus). We asked: do both ends of a single tract mature the same way? 5/n
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
We truly didn’t know what we’d find. The pattern we saw was striking – and replicable. Across nearly all tracts, we saw the most developmental drama at superficial tract regions near the cortex. Deep regions showed little age-related change. Our first axis: Deep ➡️ Superficial. 4/n
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
In three large neuroimaging datasets (total N = 2,716; ages 5-23), we modeled development of mean diffusivity at 100 points along each major white matter tract – using pyAFQ (tractometry.org/pyAFQ) to study along-tract properties. 3/n
tractometry.org
Automated Fiber Quantification in Python (pyAFQ) — AFQ 2.1 documentation
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Audrey Luo @audreycluo.bsky.social · 02/03/2026
Landmark diffusion MRI studies have shown dramatic white matter changes during youth. But most in vivo work summarizes each tract with a single average – even though animal and infant postmortem studies suggest regional variation. So we looked along tracts instead. 2/n
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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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Audrey Luo @audreycluo.bsky.social · 08/01/2026
Check out this exciting new paper from @joelleba.bsky.social linking white matter to brain organization and cognition!! 🧠 Joëlle has transformed what started as a fun group project at Neurohackademy into a beautiful manuscript 🌈 congrats!!
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Baller Lab @ballerlab.bsky.social · 03/12/2025
Excited to share that our new review, "Depression as a disease of white matter network disruption: Learning from Multiple Sclerosis," is out now in Biological Psychiatry! We propose MS as a powerful model for studying how white matter network changes contribute to depression.
biologicalpsychiatryjournal.com
Depression as a disease of white matter network disruption: Learning from Multiple Sclerosis
Depression is a common and debilitating psychiatric disorder that is associated with substantial morbidity and mortality. For nearly 40 years, scientists have attempted to localize depression in the b...
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Brooke Sevchik @bsevchik.bsky.social · 12/11/2025
🧠I am excited to announce that our manuscript introducing a new data resource – PennLEAD (Penn Longitudinal Executive functioning in Adolescent Development) – is now available on bioRxiv. Below are some details highlighting our data resource🧵funded by NIMH R01MH113550 www.biorxiv.org/content/10.1...
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Valerie Jill Sydnor @valeriejsydnor.bsky.social · 11/11/2025
Happy to share our review "Investigating hierarchical critical periods in human neurodevelopment” in @npp-journal.bsky.social! We examine neurobiological, environmental & behavioral evidence for human critical periods in sensory and association cortex +discuss new research directions rdcu.be/eMkVU 🧵
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Matt Cieslak @cieslakmatt.bsky.social · 11/11/2025
After years of development and testing, we are happy to present our work in "Diffusion MRI Processing in the HEALthy Brain and Child Development Study: Innovations and Applications"! www.biorxiv.org/content/10.1.... A thread:
biorxiv.org
Diffusion MRI Processing in the HEALthy Brain and Child Development Study: Innovations and Applications
The landmark ongoing HEALthy Brain and Cognitive Development (HBCD) study will longitudinally chart brain development in a large sample (projected n=7,200) of infants through age 10 years with multimo...
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Jonah Padawer-Curry, PhD @jonahpadawercurry.bsky.social · 15/10/2025
🚨 New science alert! Our cross-species study, now in Nature Neuroscience, demonstrates psychedelics distort how we should interpret functional brain imaging. 👇🧵 nature.com/articles/s41... #Neuroscience #Psychedelics #BrainImaging
nature.com
Psychedelic 5-HT2A receptor agonism alters neurovascular coupling and differentially affects neuronal and hemodynamic measures of brain function
Nature Neuroscience - Padawer-Curry et al. show that the hallucinogenic 5-HT2A receptor agonist DOI alters neurovascular coupling in mice, with implications for the interpretation of human fMRI...
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Golia Shafiei @goliashf.bsky.social · 22/09/2025
Excited to share that our work introducing the Reproducible Brain Charts (RBC) data resource is now published in Neuron!! 🎉 📚 Read the paper: authors.elsevier.com/c/1lpaF3BtfH... 🧠 Explore the RBC dataset: reprobrainchart.github.io
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Ted Satterthwaite @ted-satterthwaite.bsky.social · 07/09/2025
New preprint from stellar IRTG PhD student Amelie Rauland + team on white matter bundle reconstruction! Shows that WM bundles can be reliably extracted from simple 32-direction dMRI & features predict cognition - huge potential for legacy and clinical data. Thread 👇 www.biorxiv.org/cgi/content/...
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Parker Singleton @parkersingleton.bsky.social · 18/08/2025
🍄 Our new living systematic review and meta-analysis on psilocybin for depression is out. Here's what we found and the open science infrastructure we built to support it 🧪🧵 www.medrxiv.org/content/10.1...
SYPRES (Synthesis of Psychedelic Research Studies) logo
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Steven Meisler @stevenmeisler.com · 14/08/2025
Congrats @audreycluo.bsky.social!! Celebrating a wonderful dissertation defense that shed novel, fundamental, and convincing insights into white matter development.
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Audrey Luo @audreycluo.bsky.social · 15/08/2025
Thank you reproducibilibuddy / dMRI extraordinaire!!
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Parker Singleton @parkersingleton.bsky.social · 14/08/2025
@audreycluo.bsky.social has had one of the most impressive graduate careers I've ever seen. Kudos!!!!
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Audrey Luo @audreycluo.bsky.social · 15/08/2025
🥺thanks Parker!!
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Audrey Luo @audreycluo.bsky.social · 15/08/2025
So grateful to @ted-satterthwaite.bsky.social for being the most wonderful PhD adviser and @pennlinc.bsky.social for being my lab home. My heart is full 🩷🧡💛
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Bratislav Misic @misicbata.bsky.social · 04/08/2025
Integrating and interpreting brain maps | doi.org/10.1016/j.ti... Imaging and recording technologies make it possible to map multiple biological features of the brain. How can these features be conceptually integrated into a coherent understanding of brain structure and function? ⤵️
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Penn NGG @pennngg.bsky.social · 29/07/2025
#NGG is proud to present our next Thesis Defense given by Audrey Luo @audreycluo.bsky.social of the Satterthwaite Lab @ted-satterthwaite.bsky.social ! Please join us in person or virtually (DM us for the link) on 8/5. Best of luck, Audrey! #PhAlmostDone 🥳
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Audrey Luo @audreycluo.bsky.social · 09/07/2025
Such beautiful and careful work from @valeriejsydnor.bsky.social, as always!!
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Lucina Uddin @lucinauddin.bsky.social · 27/06/2025
The ABCD Study 6.0 release is finally here! 🧠 Apply for data access here @theabcdstudy.bsky.social www.nbdc-datahub.org
nbdc-datahub.org
NBDC Data Hub
NIH Brain Development Cohorts (NBDC) Data Sharing Platform: Unifying ABCD and HBCD data management in one powerful platform.
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Damien Fair @drdamienfair.bsky.social · 29/06/2025
Alert! ... for the child development world! @fluxsociety.bsky.social @fitngin.bsky.social ‪ The Healthy Brain and Child Development (HBCD) Study has released its first data wave - it’s massive. Check here: docs.hbcdstudy.org and here: nbdc-datahub.org Here’s why it matters 🧠🍼
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Ted Satterthwaite @ted-satterthwaite.bsky.social · 25/06/2025
@kevin-y-sun.bsky.social‬ will be presenting his work on "Copy Number Variant Risk Scores Are Associated with Personalized Functional Brain Network Topography" Wed, June 25, 13:15 - 15:15 & Thus, June 26, 13:45 - 15:45
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