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Flores-Alonso, S. I.

Publications and source records attributed to Flores-Alonso, S. I..

2 recordsLinked to original sources

Resting Cortical Alpha and Beta Oscillations are Continuous Across Space and Frequency

Cortical alpha and beta oscillations are traditionally conceptualized as spatially distinct, with alpha rhythms constrained to the occipital cortex and beta rhythms to frontal cortices. Little work has tested this spatial separability empirically and explored whether the distribution of these cortical rhythms may be continuous in space and frequency. Using task-free magnetoencephalography of 604 participants and density-based unsupervised clustering of individual spatio-spectral peaks, we show that the distribution of cortical oscillatory activity across the alpha-to-beta frequency range is structured along a continuous spatio-spectral gradient from occipitotemporal to frontal cortices. Across individuals, the expression of this gradient correlates positively with cognition and decays with age. This work introduces a continuous spatio-spectral organizational structure linking alpha- and beta-band activity across all lobes of the neocortex, with a potential role in flexible segregation and integration of communication between sensorimotor regions of the brain.

neuroscience↗

Chemoarchitectural influences on the cortical connectome confer resilience in aging

The macroscale signaling of the brain emerges from the integration of connected areas, orchestrated by microscale, regional molecular processes. Despite growing multimodal neuroimaging data resources, the role of cortical chemoarchitecture in shaping inter-regional functional connectivity remains poorly understood. Here, we examine whether brain regions that share a chemoarchitectural signature exhibit strong frequency-resolved functional connectivity, and whether aging moderates this neurochemical-functional alignment. Using magnetoencephalography data from across the healthy adult lifespan (n = 569), we identify a frequency-dependent organization of functional connectivity by slow neuromodulator systems, with low-frequency bands ({theta}-) shaped most strongly by noradrenergic systems, and faster ({beta}) alignment dependent on serotonergic chemoarchitecture. Aging strengthens the influence of neurochemistry on inter-regional connectivity, with frequency-specific implications for age-related cognitive performance. Neurochemical influences on{theta} -band connectivity were associated with worse cognition in older adults, while the opposite was true for the low-{gamma} ({gamma}{downarrow}) band. This suggests that neuromodulatory preservation of high-frequency dynamics in older adults may reflect neural resilience. Together, our findings indicate that neurochemical-functional alignment is frequency-dependent, distinguishing between maladaptive and resilient modes of brain organization.

neuroscience↗