Posts by LNCD
🎯 Function matters: shorter neural timescales predicted better working memory accuracy in adolescence and more stable responding in adulthood. Together, these results position intrinsic neural timescales as a conserved, biologically grounded marker of brain maturation across species.
⚡ What drives faster neural timescales? Shorter timescales were linked to increased excitation–inhibition balance, reduced aggregate spiking, and deep-layer intracortical myelination, tying population-level dynamics to circuit physiology and structure.
🧠 Adolescence is a period of temporal reorganization in the brain. Across longitudinal EEG, human sEEG, and macaque LFPs, we show that intrinsic neural timescales shorten through adolescence, especially in frontal & parietal cortex—supporting executive system maturation.
NEW PREPRINT ALERT !! Check out the latest work from postdoc @shanemckeon.bsky.social
entitled "Cross-species evidence for the refinement of intrinsic neural timescales supporting executive system maturation through adolescence" www.biorxiv.org/content/10.6...
New preprint !! Check out the latest work from postdoc @shanemckeon.bsky.social on intrinsic neural timescales across adolescence using EEG, sEEG, an LFPs from non human primates!
New preprint !! Check out the latest work from postdoc @shanemckeon.bsky.social on intrinsic neural timescales across adolescence using EEG, sEEG, an LFPs from non human primates!
Cross-species evidence for the refinement of intrinsic neural timescales supporting executive system maturation through adolescence www.biorxiv.org/content/10.64898/2025.12...
Highlights:
- Ultra-high-field 7 T fMRI was used to segment amygdala nuclei
- Fronto-amygdala functional connections develop along distinct trajectories
- Age-related connections relate to affective and cognitive control
- Amygdala nuclei exhibit developmental and functional specialization
NEW PAPER ALERT! Check out the recent work of @amarojha.bsky.social "Human amygdala nuclei show distinct developmental trajectories from adolescence to adulthood in functional integration with prefrontal circuitry" now out in Cell Reports! www-sciencedirect-com.pitt.idm.oclc.org/science/arti...
Find us now on insta ! @lncd_pitt
Day 3 of #flux2025 !
Flux day 2! Starting it off with a flash talk by @shanemckeon.bsky.social and then 4 posters! #Flux2025
Find us now on insta ! @lncd_pitt
Go Victoria Go! First day of flux is wrapping up with an awesome poster session! #Flux2025
Happy Flux day 1! Check out Victoria Dionisos’ poster (number T12) today on Developmental Interactions Between Local and Long-Range Connectivity, Gray Matter Microstructure, and Inhibitory Control From Adolescence to Young Adulthood #Flux2025
How does the human brain coordinate hierarchical cortical development? Our work in Nature Neuroscience identifies a role for thalamocortical structural connectivity in the expression of hierarchical periods of cortical plasticity & environmental receptivity in youth 🧵 www.nature.com/articles/s41...
Poster session 2 is underway at Pitt psychiatry day! Go check out @shanemckeon.bsky.social @amarojha.bsky.social Dan Ashley Destiny and Piya!
Happy Psychiatry Day! Check out our labs work at soldiers and sailors at Pitt ! First up this morning we have Abby ! A first year BioE PhD student @abbybeatty.bsky.social
@nicolenelson.bsky.social would love to be added to your starter pack!
@finncalabro.bsky.social
After searching through bluesky, I realized there wasnt a starter pack for Adolescent Neurocognitive Development (at least I couldnt find one), so decided to start one! Please help me in adding members of the awesome community
go.bsky.app/R8mzr8W
This is the bluesky account for the Laboratory of Neurocognitive Development under Dr. Breatiz Luna. We would love to be added !
@nataliebrito.bsky.social Hi Dr. Brito! This is the bluesky account for the Laboratory of Neurocognitive Development under Dr. Breatiz Luna. We would love to be added to the developmental psych starter pack!
Our findings highlight adolescence as a critical period for functional specialization in the brain. As local connectivity decreases, circuits become more independent, higher-dimensional, & optimized for cognition. #Neuroimaging
Understanding these developmental shifts is key for studying mental health disorders that emerge in adolescence (e.g., schizophrenia, mood disorders). Future work should explore:
🔹 Synaptic pruning mechanisms
🔹 Neural signal dimensionality
🔹 Longitudinal effects on cognition
These changes may:
✅ Increase information complexity in neural coding
✅ Support better cognitive flexibility & memory
✅ Reduce variability in motor & executive tasks
Adolescence is when the brain optimizes for efficiency over redundancy!