Disrupted Energy Landscape in Individuals with Mild Cognitive Impairment: Insights from Network Control Theory
Neumann, D. L.; Razlighi, Q.; Stern, Y.; Devanand, D. P.; Jamison, K.; Kuceyeski, A.; Tozlu, C.
Show abstract
IntroductionPatients with mild cognitive impairment (MCI) have shown disruptions in both brain structure and function, often studied separately. However, understanding the relationship between brain structure and function can provide valuable insights into this early stage of cognitive decline for better treatment strategies to avoid its progression. Network Control Theory (NCT) is a multi-modal approach that captures the alterations in the brains energetic landscape by combining the brains functional activity and the structural connectome. Our study aims to explore the differences in the brains energetic landscape between people with MCI and healthy controls (HC). MethodsFour hundred ninety-nine HC and 55 MCI patients were included. First, k-means was applied to functional MRI (fMRI) time series to identify commonly recurring brain activity states. Second, NCT was used to calculate the minimum energy required to transition between these brain activity states, otherwise known as transition energy (TE). The entropy of the fMRI time series as well as PET-derived amyloid beta (A{beta}) and tau deposition were measured for each brain region. The TE and entropy were compared between MCI and HC at the network, regional, and global levels using linear models where age, sex, and intracranial volume were added as covariates. The association of TE and entropy with A{beta} and tau deposition was investigated in MCI patients using linear models where age, sex, and intracranial volume were controlled. ResultsCommonly recurring brain activity states included those with high and low amplitude activity in visual (+/-), default mode (+/-), and dorsal attention (+/-) networks. Compared to HC, MCI patients required lower transition energy in the limbic network (adjusted p = 0.028). Decreased global entropy was observed in MCI patients compared to HC (p = 7.29e-7). There was a positive association between TE and entropy in the frontoparietal network (p = 7.03e-3). Increased global A{beta} was associated with higher global entropy in MCI patients ({rho} = 0.632, p = 0.041). ConclusionLower TE in the limbic network in MCI patients may indicate either neurodegeneration-related neural loss and atrophy or a potential functional upregulation mechanism in this early stage of cognitive impairment. Future studies that include people with AD are needed to better characterize the changes in the energetic landscape in the later stages of cognitive impairment.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The heterogeneous functional architecture of the posteromedial cortex is associated with selective functional connectivity differences in Alzheimer’s disease 96%
- Energy of functional brain states correlates with cognition in adolescent-onset schizophrenia and healthy persons 96%
- Beware of White Matter Hyperintensities Causing Systematic Errors in Grey Matter Segmentations! 96%
Similar papers in this journal
- Divergent functional connectivity changes associated with white matter hyperintensities 96%
- Subjective cognitive decline predicts lower cingulo-opercular network functional connectivity in individuals with lower neurite density in the forceps minor 96%
- Dysregulated Neurofluid Coupling as a New Noninvasive Biomarker for Primary Progressive Aphasia 96%
Similar papers in this journal
- Normative trajectories of R1, R2* and magnetic susceptibility in basal ganglia on healthy ageing 96%
- Sensitivity of unconstrained quantitative magnetization transfer MRI to Amyloid burden in preclinical Alzheimer’s disease 96%
- Dynamic network features of functional and structural brain networks support visual working memory in aging adults 96%
Similar papers in this journal
- The link between static and dynamic brain functional network connectivity and genetic risk of Alzheimer's disease 96%
- Reshaped functional connectivity gradients in acute ischemic stroke 96%
- Temporal stability of the ventral attention network and general cognition along the Alzheimer’s disease spectrum 96%
Similar papers in this journal
- Dementia risk factors modify hubs but leave other connectivity measures unchanged in asymptomatic individuals: a graph theoretical analysis. 97%
- Disrupted dynamic functional network connectivity among cognitive control networks in the progression of Alzheimer's disease 96%
- Conductance-Based Structural Brain Connectivity in Aging and Dementia 96%
"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.