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Updated: Mar 29, 2026

Evaluation of the Cognitive Performance of Hypertensive Patients with Silent Cerebrovascular Lesions
Published on: April 23, 2021
Cerebral changes and cognitive impairment after an ischemic heart disease: a multimodal MRI study
Charlotte Bernard1,2,3, Gwénaëlle Catheline4,5,6, Bixente Dilharreguy4,5
1Univ. Bordeaux, INCIA, UMR 5287, F-33400, Talence, France. charlotte.bernard1@yahoo.fr.
Insights
Cognitive impairment, particularly executive dysfunction, affects over 30% of acute coronary syndrome (ACS) patients. This study found functional brain connectivity changes, not structural ones, are linked to this executive dysfunction in ACS survivors.
Area of Science:
- Neuroscience
- Cardiology
- Cognitive Science
Background:
- Cognitive impairment, especially executive dysfunction, is prevalent in patients post-acute coronary syndrome (ACS).
- Understanding the underlying cerebral mechanisms is crucial for managing long-term patient outcomes.
Purpose of the Study:
- To investigate the cerebral structural and functional basis of executive dysfunction in patients following ACS.
- To differentiate between transient and persistent executive impairments using multimodal MRI.
Main Methods:
- Recruited 33 patients 4 ± 1 months post-ACS, evaluating executive functions (Trail-Making-Test-B) at baseline and 6-month follow-up.
- Classified patients into 'cognitively normal', 'transient impaired', and 'impairing' groups based on performance relative to normative data.
- Utilized Voxel-Based Morphometry, Tract-Based Spatial Statistics for structural analysis, and Network-Based Statistics for resting-state functional connectivity analysis.
Main Results:
- No significant structural brain differences were found between cognitively impaired and normal patients.
- Transiently impaired patients showed increased functional connectivity in a network involving middle-orbito-frontal regions compared to controls.
- Patients with persistent impairment exhibited a non-significant decrease in functional connectivity.
Conclusions:
- Executive dysfunction post-ACS is associated with altered functional brain connectivity, not structural changes.
- Increased functional connectivity in specific cognitive networks characterizes transient executive impairment in ACS survivors.
- Further research with larger cohorts is needed to validate findings and assess the risk of permanent cognitive disorders.
Abstract:
Three to 6 months after an acute coronary syndrome (ACS), cognitive impairment is observed in more than 30 % of the patients, mainly in executive functioning. The aim of this study was to investigate, using multimodal MRI, cerebral anatomo-functional substratum of executive dysfunction. Thirty-three patients were recruited 4 ± 1 months after a first ACS. Executive functions were evaluated with the Trail-Making-Test-B (TMTB) at baseline (ie 4 ± 1 months after ACS) and 6 months later (ie 10 ± 1 months after ACS). Using both time-points, we identified 3 groups of patients according to normative data based on age, gender and education level: 15 'cognitively normal' patients without impairment at each follow-up, 10 'transient impaired' patients with an impairment only at baseline and 8 'impairing' patients with an impairment only at follow-up. We explored, in the whole-brain, the structural integrity using Voxel-Based Morphometry and Tract-Based Spatial Statistics and the resting-state functional connectivity using Network-Based Statistics. No structural difference was observed between impaired and cognitively normal patients. At the functional level, compared to the 'cognitively normal' group, the 'transient impaired' patients presented an increased functional connectivity in a network centered on middle-orbito-frontal regions, whereas the 'impairing' patients presented only a non-significant decrease of functional connectivity. Executive dysfunction in ACS patients is associated to functional but no structural characteristics, particularly to an increased functional connectivity in cognitive networks in transient impaired patients. Further studies with larger sample size are needed to confirm these results and to determine if these patients could be at higher risk for developing permanent cognitive disorders.
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