Aging diminishes interlaminar functional connectivity in the mouse cortical V1 and CA1 hippocampal regions
Thai, T.; Wellman, S.; Suematsu, N.; Garcia Padilla, C.; Tung, T.-H.; Sridhar, S.; Cambi, F.; Kozai, T. D. Y.
Show abstract
Aging disrupts brain network integration and is a significant risk factor for cognitive decline and neurological diseases, yet the circuit-level mechanisms underlying these changes remain unclear. Most previous studies have utilized cross-sectional or acute approaches, limiting insights into the longitudinal dynamics of the neural network. In this study, we chronically recorded laminar electrophysiological activity in both the primary visual cortex (V1) and hippocampal CA1 region of young (2-month-old) and aged (13-month-old) mice over 16 weeks. This approach allowed us to directly assess how aging modulates functional connectivity within hierarchically connected cortical and hippocampal circuits. We found that single-unit spiking activity and the signal-to-noise ratio were largely preserved in aged versus young mice, suggesting intact neuronal firing properties. However, aged mice showed global reductions in local field potential (LFP) power and a selective decrease in coherence across delta, alpha-beta, and gamma frequency bands within and between cortical layers and V1-CA1 pathways, while phase amplitude coupling remained unaffected. Interestingly, population level excitatory activity in CA1 was increased in aged animals. These findings indicate that aging selectively impairs network-level synchrony and temporal coordination in specific frequency bands and regions, with minimal loss of single-neuron function. Our results highlight the necessity of longitudinal, multi-region measurements to uncover the multi-scale vulnerabilities of the aging brain. Understanding the depth- and region-dependent circuit changes will guide strategies to preserve cortical-hippocampal communication and cognitive function in aging, as well as enhance neural interface technologies for older populations. NEW & NOTEWORTHYAging non-uniformly degrades cortico-hippocampal networks, leading to region- and frequency-specific breakdowns in coordinated activity. While single-neuron activity remains preserved, disruptions in frequency-selective synchrony (delta and alpha-beta) were observed in aged mice, indicating impaired V1-CA1 communication as a marker of aging rather than neuronal degeneration. By separating single-neuron activity and large-scale dynamics, we reveal that aging alters communication between sensory and memory systems, underscoring the need for longitudinal approaches to capture age-related impairments in laminar connectivity.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Reduced Cognitive Performance in Aged Rats Correlates with Increased Excitation/Inhibition Ratio in the Dentate Gyrus in Response to Lateral Entorhinal Input 94%
- Ensemble-specific deficit in neuronal intrinsic excitability in aged mice 94%
- Afterhyperpolarization Amplitude In Ca1 Pyramidal Cells Of Aged Long-Evans Rats Characterized For Individual Differences 94%
Similar papers in this journal
- Automated, high-dimensional evaluation of physiological aging and resilience in outbred mice 94%
- Electrophysiology and Morphology of Human Cortical Supragranular Pyramidal Cells in a Wide Age Range 94%
- Age-associated changes to neuronal dynamics involve a disruption of excitatory/inhibitory balance in C. elegans 94%
Similar papers in this journal
- Functional genomic analyses highlights a shift in Gpr17-regulated cellular processes in oligodendrocyte progenitor cells (OPC) and underlying myelin dysregulation in the aged forebrain 95%
- Age-associated transcriptomic and epigenetic alterations in mouse hippocampus 95%
- Linking age changes in human cortical microcircuits to impaired brain function and EEG biomarkers 95%
Similar papers in this journal
- Brain Structure and Working Memory Adaptations Associated with Maturation and Aging in Mice 95%
- Violation of the ultrastructural size principle in the dorsolateral prefrontal cortex underlies working memory impairment in the aged common marmoset (Callithrix jacchus) 93%
- A long-term ketogenic diet in young and aged rats has dissociable effects on prelimbic cortex and CA3 ensemble activity 93%
Similar papers in this journal
- Peripheral Auditory Nerve Impairment in a Mouse Model of Syndromic Autism 93%
- Increased hippocampal excitability and reduced modulation in relevant neural networks underlying age-related cognitive mapping deficits 93%
- Evidence accumulation rate moderates the relationship between enriched environment exposure and age-related response speed declines. 93%
"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.