Out today! Final chapter of my @PennNGG dissertation is now online at @PNASNews: https://t.co/Tfhi9PMJ6X. Coupling between inter-regional structural and functional brain connectivity remodels during brain development to support cortical specialization and executive function.
#JNeurosci: @graham_baum et al used @HumanConnectome data to characterize rate & timing of myelin development. They found evidence for prolonged myelin development into the 30's, reflecting ongoing plasticity for learning & complex cognitive functioning
https://t.co/d1Jpy0c3Ky
Out now in @SfNJournals! We use fresh data from the @HumanConnectome (HCP-D) to characterize microstructural brain development in adolescence. Link: https://t.co/cBrh3zy6tf
New preprint with @flourn0 and @leahsom! We use T1w/T2w myelin mapping in the HCP-Development sample to chart variation in the timing of cortical myelination during adolescence.
https://t.co/Eg9tZEAxF4
We are recruiting a post-doctoral fellow in neuroinformatics, with a focus on development of software for reproducible image analysis. NOTE: we are prepared to offer above-market salary for qualified folks ($80-90,000 USD/year). Full post here; please RT: https://t.co/XI8xZW1UD2
We at @ANDL_Harvard anticipate an open postdoctoral position starting in Summer 2022, contributing to a new NIH-funded project focused on identifying the interrelationships between pubertal development, brain development, and psychological functioning/well-being.
Happy to announce this work is now available online at
@ScienceAdvances!
Using pharma-fMRI and developmental fMRI, we show evidence for a hallmark feature of critical period development in adolescent association cortex. Check it out! https://t.co/0EmktPeO13
Our findings add to the growing evidence for protracted cortical myelination into the third decade of life. Massive thanks to co-authors and the whole HCP-D consortium for collaborating on this project!
New preprint with @flourn0 and @leahsom! We use T1w/T2w myelin mapping in the HCP-Development sample to chart variation in the timing of cortical myelination during adolescence.
https://t.co/Eg9tZEAxF4
Functional latent clustering identified three data-driven groups of cortical areas showing similar rate and timing of T1w/T2w myelination. This spatial pattern of microstructural brain development closely parallels the S-A axis of cortical organization and information processing.
What is the next stumbling block for neuroscience in achieving reproducible brain-behavior relationships? A sobering look at how differences in processing pipelines and seemingly innocuous decisions can drive findings apart, as well as potential solutions
https://t.co/310EUxLJYd
“Brain charts for the human lifespan”! The result of 200 people putting their 🧠🧠🧠together (120,000+ of them!) to generate growth curves from mid-gestation to 100 years. https://t.co/Mq1DjcmHuz & https://t.co/VSIiPj5nfY @jakob_seidlitz@SimonWhite83 @edbullmore @Aaron_A_B
Swipes for science!! Help us QC data for the Healthy Brain Network Preprocessed Open Diffusion Derivatives project. Go to https://t.co/srGDWmP8IK , read through the tutorial, and start swiping! You will be added as a co-author on the paper if you rate over 3,000 images!
As children grow, the variability of many phenotypes shift substantially. Might something similar be happening in the human brain, and what would that tell us about development and evolution? We explored these questions in a new paper out today @PNASNews https://t.co/PidRt36Vdm
New preprint examining cortical patterns of children’s brain networks with @ally_mackey and @DaniSBassett!
Lots of great work has examined functional communities (a.k.a. networks) in adults. We wondered--do children's brains show the same patterns?
https://t.co/RlJmhAnzlq
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