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Aberrant topological organization and age-related differences in the human connectome in subjective cognitive decline by using regional morphology from magnetic resonance imaging. | LitMetric

AI Article Synopsis

  • Subjective cognitive decline (SCD) involves a person's perception of cognitive problems despite normal performance on tests, and its relationship with brain structure is not fully understood.
  • This study analyzed the brain networks of 77 individuals (42 normal controls and 35 with SCD) using MRI, finding that SCD individuals show reduced integration and segregation in their brain networks compared to normal controls.
  • Furthermore, disruptions in brain connections and efficiency, particularly in the prefrontal cortex, suggest that aging may accelerate brain deterioration in those with SCD.

Article Abstract

Subjective cognitive decline (SCD) is characterized by self-experienced deficits in cognitive capacity with normal performance in objective cognitive tests. Previous structural covariance studies showed specific insights into understanding the structural alterations of the brain in neurodegenerative diseases. Moreover, in subjects with neurodegenerative diseases, accelerated brain degeneration with aging was shown. However, the age-related variations in coordinated topological patterns of morphological networks in individuals with SCD remain poorly understood. In this study, 77 individual morphological networks were constructed, including 42 normal controls (NCs) and 35 SCD individuals, from structural magnetic resonance imaging (sMRI). A stepwise linear regression model and partial correlation analysis were constructed to evaluate the differences in age-related alterations of the network properties in individuals with SCD compared with NCs. Compared with NC, the properties of integration and segregation in individuals with SCD were lower, and the aberrant metrics were negatively correlated with age in SCD. The rich-club connections persevered, but the paralimbic system connections were disrupted in individuals with SCD compared with NCs. In addition, age-related differences in nodal global efficiency are distributed mainly in prefrontal cortex regions. In conclusion, the age-related disruption of topological organizations in individuals with SCD may indicate that the degeneration of brain efficiency with aging was accelerated in individuals with SCD.

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Source
http://dx.doi.org/10.1007/s00429-022-02488-9DOI Listing

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