Age dictates brain functional connectivity and axonal integrity following repetitive mild traumatic brain injuries
Criado-Marrero, M.; Ravi, S.; Bhaskar, E.; Barroso, D.; Pizzi, M. A.; Williams, L.; Wellington, C. L.; Febo, M.; Abisambra, J. F.
Show abstract
Traumatic brain injuries (TBI) present a major public health challenge, demanding an in-depth understanding of age-specific signs and vulnerabilities. Aging not only significantly influences brain function and plasticity but also elevates the risk of hospitalizations and death following repetitive mild traumatic brain injuries (rmTBIs). In this study, we investigate the impact of age on brain network changes and white matter properties following rmTBI employing a multi-modal approach that integrates resting-state functional magnetic resonance imaging (rsfMRI), graph theory analysis, diffusion tensor imaging (DTI), and Neurite Orientation Dispersion and Density Imaging (NODDI). Utilizing the CHIMERA model, we conducted rmTBIs or sham (control) procedures on young (2.5-3 months old) and aged (22-month-old) male and female mice to model high risk groups. Functional and structural imaging unveiled age-related reductions in communication efficiency between brain regions, while injuries induced opposing effects on the small-world index across age groups, influencing network segregation. Functional connectivity analysis also identified alterations in 79 out of 148 brain regions by age, treatment (sham vs. rmTBI), or their interaction. Injuries exerted pronounced effects on sensory integration areas, including insular and motor cortices. Age-related disruptions in white matter integrity were observed, indicating alterations in various diffusion directions (mean, radial, axial diffusivity, fractional anisotropy) and density neurite properties (dispersion index, intracellular and isotropic volume fraction). Inflammation, assessed through Iba-1 and GFAP markers, correlated with higher dispersion in the optic tract, suggesting a neuroinflammatory response in aged animals. These findings provide a comprehensive understanding of the intricate interplay between age, injuries, and brain connectivity, shedding light on the long-term consequences of rmTBIs.
Matching journals
The top 11 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Changes in electrophysiological static and dynamic human brain functional architecture from childhood to late adulthood 94%
- Distinct structure-function relationships across cortical regions and connectivity scales in the rat brain 94%
- Genome-Wide Association Study of Brain Connectivity Changes for Alzheimer's Disease 94%
Similar papers in this journal
- How to measure functional connectivity using resting-state fMRI? A comprehensive empirical exploration of different connectivity metrics 95%
- Normal Aging in Mice is Associated with a Global Reduction in Cortical Spectral Power and Network-Specific Declines in Functional Connectivity 95%
- Brain perivascular space imaging across the human lifespan 94%
Similar papers in this journal
- Progressively reduced cerebral oxygen metabolism and elevated plasma NfL levels in the zQ175DN mouse model of Huntington disease 95%
- Unbiased Population-Based Statistics to Obtain Pathologic Burden of Injury after Experimental TBI 94%
- Long-term dietary interventions fail to mitigate functional connectivity loss and cognitive decline in the TgF344-AD rat model of Alzheimers Disease 94%
Similar papers in this journal
- Edge Community Entropy is a Novel Neural Correlate of Aging and Moderator of Fluid Cognition 96%
- Defining overlooked structures reveals new associations between cortex and cognition in aging and Alzheimer's disease 94%
- Entorhinal-hippocampal circuit integrity is related to mnemonic discrimination and amyloid-β pathology in older adults 94%
Similar papers in this journal
- The role of corticospinal and extrapyramidal pathways in motor impairment after stroke 94%
- Multiregional blood-brain barrier phenotyping identifies the prefrontal cortex as the most vulnerable region to ageing in mice 94%
- Assessment of white matter hyperintensity severity using multimodal MRI in Alzheimer's Disease 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.