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Atlas-Based Structural Disconnectomes Are Associated with Cognitive Performance in Brain Tumors

  • Technology Innovation Institute

Research output: Contribution to journalArticlepeer-review

Abstract

Background: Brain tumors are associated with impaired cognitive functioning, which may result from disruptions in brain structural connectivity. Estimating structural disconnections is a more advantageous representation of tumor impact and can be performed indirectly through normative brain atlases. Materials and Methods: Using a publicly available dataset of glioma and meningioma patient MRI scans and tumor masks, latent correlations were estimated between measures of structural disconnection and attention-based cognitive functioning. These measures included gray matter (GM) parcel damage, white matter tract damage, GM parcel-to-parcel disconnections, and reaction time (RTI) as part of the Cambridge Neuropsychological Test Automated Battery to assess attention. Results: Preprocessing pipelines with two different methods of minimizing the pathology impact on MRI normalization were utilized: cost-function masking and lesion filling. The results across both pipelines were nearly consistent, with significant correlations mainly found between RTI measures and the damage to the left inferior fronto-occipital and uncinate fasciculus, as well as the left prefrontal-visual disconnections. Conclusions: This alludes to the importance of left-hemispheric prefrontal-visual coupling in attention-based tasks, particularly those involving object- and feature-based attention.

Original languageEnglish
Pages (from-to)489-499
Number of pages11
JournalBrain Connectivity
Volume14
Issue number9
DOIs
StatePublished - 1 Nov 2024

Keywords

  • brain tumor
  • disconnectome
  • normative modeling
  • reaction time

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