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May 30, 2026Nature Communications0 citationsOpen Access

Brain maintenance biomarkers from structural and functional interactions in aging and neurodegeneration

YLYumeng LiXZXinyue ZhangXLXin Li

Key Points

  • This research aims to quantify brain maintenance and understand its biological underpinnings in aging and neurodegeneration.
  • Analyzed structural MRI and resting-state functional MRI data from 1280 older adults.
  • Developed a model based on young adults to estimate functional capacity from preserved brain structure.
  • Defined brain maintenance as the discrepancy between predicted and observed brain function.
  • Higher brain maintenance correlates with slower cognitive decline (effect size not specified).
  • Associated with lower amyloid-β burden (exact metrics not specified).
  • Linked to improvements in memory, attention, and processing speed (exact metrics not specified).

Abstract

Brain maintenance may help explain why some individuals remain cognitively resilient despite aging, but its biological basis is not well understood. Here, we show that brain maintenance can be quantified from the relationship between brain structure and function. Using structural MRI and resting-state functional MRI from 1280 older adults, we built a model based on young adults to estimate the functional capacity supported by preserved brain structure, and defined brain maintenance as the difference between predicted and observed function. Brain maintenance was most evident in prefrontal, cingulate, and precuneus regions and was enriched in higher-order functional networks. Higher brain maintenance was associated with slower cognitive decline, lower amyloid-β burden, and domain-specific variation in memory, attention, and processing speed. These findings provide a biologically grounded marker of resilience in healthy and pathological aging. Using multimodal MRI and PET across healthy and pathological aging, the authors derive a structure-function brain maintenance metric that predicts cognitive resilience, slower decline, and lower amyloid burden.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6a1a7ecb0307b785094314efhttps://doi.org/10.1038/s41467-026-73071-7
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Joint trajectories of brain atrophy, white matter hyperintensities and cognition quantify brain maintenance2026
  2. 2Quantifying Cognitive Reserve Through Structural-Functional Interactions: Neuroadaptive Biomarkers in Aging and Neurodegenerative Pathologies2025
  3. 3Modeling and evaluating longitudinal brain maintenance and cognitive reserve using episodic memory, brain structure, and functional connectivity in older adults2026
  4. 4Linking structural and functional changes during aging using multilayer brain network analysis2024 · 28 citations
  5. 5Neuromarkers of Adaptive Neuroplasticity and Cognitive Resilience Across Aging: A Multimodal Integrative Review2026 · 3 citations