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Campo, F. F.

Publications and source records attributed to Campo, F. F..

2 recordsLinked to original sources

Altered brain-ventricle coupling modes over Alzheimer's disease progression detected with fMRI

The temporal coordination between fMRI signals in gray matter and ventricular spaces represents an emerging yet poorly understood dimension of brain physiology with potential relevance for neuroprotection. Here, we analyzed 2177 resting-state fMRI scans from 880 participants spanning the cognitive spectrum from normal aging to dementia, using a unified phase-coupling approach that incorporates fluctuations in both brain tissue and ventricular space. We identify distinct modes of Brain-Ventricle (BraVe) coupling occurring over time, and compare their temporal occupancy across cognitive status groups, neurodegenerative biomarkers and cognitive scores. In the most prevalent BraVe mode, signals across the entire brain evolve in anti-phase with ventricular signals, occurring less frequently with cognitive decline (p < 10-7, g > 0.3). In the remaining BraVe modes, specific cortical regions temporarily align with ventricular fluctuations, shaping canonical resting-state networks at the cortical level. Two BraVe modes overlapping with the Default Mode Network and the Frontoparietal Network, occur less frequently in dementia (p < 10-8, g > 0.35), with the latter correlating significantly with FDG-PET glucose metabolism (r = 0.20, p = 3.65x10-5). Conversely, a mode overlapping with the Limbic Network increases in occupancy with cognitive decline and associates with APOE {varepsilon}4 status (r = 0.11, p = 1.30x10-6). BraVe mode occupancy correlates more strongly and broadly with cognitive function than with disease-specific molecular biomarkers, with between 16 and 27 cognitive and functional variables per mode surviving strict Bonferroni correction, spanning global cognition, episodic memory, executive function, and everyday functioning. These findings reveal that the transient phase shifts underlying resting-state network dynamics are not arbitrary: when cortical subnetworks shift out of phase from the global brain signal, they align with ventricular signals, suggesting that resting-state functional connectivity and brain-ventricle coupling may be two perspectives on the same underlying physical process, one that is directly linked with cognitive function.

neuroscience↗

A systematic and meta-analytic review of non-verbal auditory memory in the brain

While sounds are essential for human development, existing research primarily emphasizes visual and spatial memory and speech in relation to auditory processes, with a lack of a cohesive understanding of memory mechanisms for non-verbal sounds. This systematic review and coordinate-based meta-analysis of neuroimaging findings aims to comprehensively organize the literature for identifying the key brain mechanisms involved in short-term memory, working memory, and long-term memory for non-verbal auditory information. Additionally, we aimed to identify whether and how individual differences in neural memory processes related to auditory expertise (musicianship), aging or auditory impairments such as amusia are explored in the literature. Our review included ninety studies meeting the selection criteria, with only thirteen studies containing brain coordinates could be included in the meta-analysis. The coordinate-based meta-analysis identified a frontal hub for non-verbal auditory memory encompassing the medial frontal gyrus, cingulate gyrus and superior frontal gyrus.

neuroscience↗