Results show that lifespan EEG variation is structured through complementary temporal trajectories, spatial architectures, and regional transition sequences, which provides a basis for investigating brain development and aging and for identifying atypical patterns associated with neurological and psychiatric disorders.
Whether the heterogeneity of psychiatric conditions converges on shared neurophysiological alterations or translates into distinct signatures remains unclear. We assembled high-density electroencephalogram (hd-EEG) resting-state recordings from 4,812 individuals aged 5 months to 66 years across 11 psychiatric condition...
Adrien E. E. Dubois, Sarah Lippé, Charles-Olivier Martin et al.· bioRxiv· 0 citations
ABSTRACT Cognitive aging is widely associated with a progressive weakening of neural responses associated with predictive brain mechanisms. This view is supported by decades of electrophysiological studies reporting attenuated mismatch responses in older adults. Yet the literature remains inconsistent, suggesting that...
M. H. Andersen, G. Fernández-Rubio, David Ricardo Quiroga‐Martinez et al.· Advancement of science· 0 citations
Non-human primates (NHPs) provide an essential translational platform for investigating neural mechanisms underlying brain aging and neurodegenerative diseases. Their neuroanatomical organization, cortical complexity, and cognitive capacities share close parallels with those of humans, enabling a degree of experimental...
Ankur Gupta, Yulia Dembitskaya, Anton P. Pushkarev et al.· Frontiers in Neuroscience· 0 citations
Spontaneous neuronal oscillations support large-scale brain communication and are sensitive to adult aging, yet how their moment-to-moment dynamics change across the adult lifespan and relate to cognition remains unclear. Here, we used resting-state magnetoencephalography (MEG) and time-delay embedded hidden Markov mod...
Zhong-Peng Dai, Yue Gu, Tatia M. C. Lee· GeroScience· 0 citations
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