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Evaluation of the Cognitive Performance of Hypertensive Patients with Silent Cerebrovascular Lesions
Published on: April 23, 2021
The Impact of Coronary Artery Disease on Brain Vascular and Metabolic Health: Links to Cognitive Function
Safa Sanami1,2,3, Stefanie A Tremblay1,2,3, Ali Rezaei1,2,3
1Physics Department, Concordia University, Montreal, QC, Canada.
Insights
Coronary artery disease (CAD) impairs brain blood flow and oxygen use, affecting cognitive functions like executive function and working memory. These vascular and metabolic changes highlight potential targets for preserving brain health in CAD patients.
Area of Science:
- Cardiovascular Medicine
- Neuroscience
- Medical Imaging
Background:
- Coronary artery disease (CAD) is a leading cause of death globally and impacts brain health.
- Mechanisms linking CAD to brain vascular and metabolic changes are not fully understood.
- Previous studies show reduced cerebral blood flow (CBF) and cerebrovascular reactivity (CVR) in CAD patients.
Purpose of the Study:
- To investigate how CAD affects cerebral vascular and metabolic health.
- To determine the relationship between these alterations and cognitive function.
- To identify potential biomarkers for cognitive decline in CAD.
Main Methods:
- Quantitative magnetic resonance imaging (MRI) to measure CBF, CVR, cerebral metabolic rate of oxygen (CMRO₂), and oxygen extraction fraction (OEF).
- Neuropsychological testing to assess executive functions, working memory, processing speed, and verbal episodic memory.
- Comparison between 35 CAD patients and 37 healthy controls.
Main Results:
- CAD patients exhibited widespread vascular and metabolic impairments: lower CBF, CVR, CMRO₂, and higher OEF compared to controls.
- CBF deficits were more severe in CAD patients with a history of myocardial infarction.
- Reduced CVR correlated with poorer executive function, and elevated OEF with impaired working memory.
Conclusions:
- CAD significantly impairs cerebral vascular and metabolic function, indicating insufficient oxygen delivery to the brain.
- CVR and OEF are sensitive indicators linking brain health to cognitive outcomes in CAD.
- Targeting CVR and OEF may help preserve cognitive function in individuals with CAD.
Abstract:
Coronary artery disease (CAD), the leading cause of mortality worldwide, is increasingly recognized for its impact on brain health and cognition, yet the mechanisms linking CAD to vascular and metabolic alterations in the brain remain poorly understood. Prior work has identified regional deficits in cerebral blood flow (CBF) and cerebrovascular reactivity (CVR), a measure of vascular reserve, in patients with CAD, but the consequences of these impairments for cognition and cerebral metabolism have not been established. This study investigated how CAD influences cerebral vascular and metabolic health, and how these alterations relate to cognitive function across multiple domains. Using quantitative magnetic resonance imaging (MRI), we measured CBF, CVR, cerebral metabolic rate of oxygen (CMRO₂), and oxygen extraction fraction (OEF), alongside a validated neuropsychological battery yielding composite scores of executive functions, working memory, processing speed, and verbal episodic memory. The final sample included 35 CAD patients (CAD; n = 35, 66 ± 9 years, 6 females) and 37 healthy controls (n = 37, 65 ± 8 years, 10 females). Compared with controls, CAD patients demonstrated widespread vascular and metabolic impairments, including lower CBF, CVR, and CMRO₂, and elevated OEF, consistent with insufficient oxygen delivery. CBF deficits were more pronounced in patients with prior myocardial infarction. Importantly, lower CVR was associated with poorer performance in the cognitive domain of executive function, while higher OEF related to poorer working memory, underscoring the role of vascular reserve and oxygen consumption in cognition. These findings demonstrate that CAD impairs cerebral vascular and metabolic health, highlighting CVR and OEF as sensitive biomarkers linking brain health to cognitive outcomes and as promising targets for interventions to preserve cognition in CAD.
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