Structural and functional alterations of posterior cingulate cortex subregions in successful cognitive aging.

Successful cognitive aging (SCA) describes the preservation of cognitive abilities into advanced age, but its neural basis remains incompletely understood. Metabolic and pathological evidence implicates the posterior cingulate cortex (PCC) as a key region supporting cognitive resilience. However, fu...

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Published in:Frontiers in Aging Neuroscience pp. 1 - 12
Main Authors: Wang, Jie, Li, Yunfei, Feng, Tianyuyi, Xu, Ruixia, Li, Jiaqi, Zheng, Yanling, Hu, Yang, Zhao, Xiaohu
Format: diagnostic images research tables/charts Journal Article
Published: Frontiers Media S.A. 2026
Online Access:View this record in EBSCOhost
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      jtl: Frontiers in Aging Neuroscience
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      dt: 2026
      pid: 40038
      pub: Frontiers Media S.A.
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        10.3389/fnagi.2026.1929453
        197047483
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        atl: Structural and functional alterations of posterior cingulate cortex subregions in successful cognitive aging.
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        au:
          Wang, Jie
          Li, Yunfei
          Feng, Tianyuyi
          Xu, Ruixia
          Li, Jiaqi
          Zheng, Yanling
          Hu, Yang
          Zhao, Xiaohu
        affil: The Department of Radiology of the Fifth People's Hospital of Shanghai, Fudan University, Shanghai, China
      sug:
        subj:
          Cerebral Cortex Anatomy and Histology
          Limbic System Anatomy and Histology
          Cerebral Cortex Physiology
          Limbic System Physiology
          Functional Connectivity
          Cognitive Aging
          Healthy Aging
          Human
          Funding Source
          Cross Sectional Studies
          Secondary Analysis
          Episodic Memory
          Executive Function
          Magnetic Resonance Imaging Methods
          Brain Cortical Thickness
          Neuroradiography
          Middle Age
          Aged, 80 and Over
          Post Hoc Analysis
          Spearman's Rank Correlation Coefficient
          Analysis of Covariance
          Data Analysis Software
          Male
          Female
          Pearson's Correlation Coefficient
          Descriptive Statistics
          Time Series
          Fisher's Exact Test
          Cerebral Cortex Pathology
          Limbic System Pathology
          Cognition Disorders Pathology
          Middle Aged: 45-64 years
          Aged, 80 & over
          Male
          Female
      ab: Successful cognitive aging (SCA) describes the preservation of cognitive abilities into advanced age, but its neural basis remains incompletely understood. Metabolic and pathological evidence implicates the posterior cingulate cortex (PCC) as a key region supporting cognitive resilience. However, functionally distinct PCC subregions have rarely been examined using complementary structural, microstructural, and functional imaging measures. In this cross-sectional secondary analysis of publicly available Human Connectome Project in Aging data, we identified 29 adults aged at least 80 years who met successful cognitive aging criteria based on episodic memory and executive function. We selected 29 adults with normal aging (NA) group and 29 middle-aged adults (MA) group matched for sex and education, yielding 87 participants. We combined structural MRI, neurite orientation dispersion and density imaging, and resting-state functional MRI to assess multimodal features across three PCC subregions. These features included cortical thickness, Neurite Density Index (NDI), Orientation Dispersion Index (ODI), Free Water Fraction (FWF), and cortex-wide functional connectivity. Both older groups showed lower cortical thickness in the dorsal and ventral PCC than the MA group. Cortical thickness, NDI, and ODI did not differ significantly between successful and normal aging. FWF was numerically lower in the left ventral PCC in SCA group, but this exploratory observation did not reach significance (Tukey-adjusted P = 0.059). Compared with the NA group, the SCA group showed significantly weaker connectivity between all PCC subregions and widespread prefrontal cortices (adjusted P < 0.05). In the pooled older-adult sample, weaker left ventral PCC–medial prefrontal connectivity correlated with better episodic memory (r = −0.430, FDR-adjusted P = 0.026), although neither within-group association was significant. These findings suggest that SCA was associated with lower PCC–prefrontal functional connectivity, but not with detectable preservation of PCC cortical thickness. The numerical FWF difference in the left ventral PCC remains exploratory and requires independent replication. These subregion-specific patterns provide a potential framework for understanding heterogeneous cognitive-aging trajectories, but require confirmation in larger longitudinal cohorts.
      pubtype: Academic Journal
      doctype:
        diagnostic images
        research
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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