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November 9, 2023PeerJ4 citationsOpen Access

Investigating altered brain functional hubs and causal connectivity in coronary artery disease with cognitive impairment

RQRui QinLTLi TongCLCuicui Li

Key Result

Coronary artery disease was associated with altered brain network connectivity, which correlated positively with cognitive function (r=0.491, p=0.015).

Study Design

Type

Case-Control (n=48)

Structured PICO

Are there alterations in brain network connectivity and cognitive function in patients with coronary artery disease compared to healthy controls?

P
Population
48 participants comprising 24 patients with coronary artery disease and 24 matched healthy controls undergoing fMRI and neuropsychological evaluation.
C
Comparator
24 healthy controls matched for age, gender, and education
O
Outcome
Resting-state brain network connectivity (degree centrality and effective connectivity) and cognitive functionsurrogate

Patients with coronary artery disease exhibit altered brain network connectivity in specific regions (SFG, PHC, MTG) that correlates with cognitive decline, providing neuroimaging evidence for cognitive impairment in CAD.

Main Result

Effect estimate: r = 0.491

p-value: p=0.015

Abstract

Background Coronary artery disease (CAD) and cognitive impairment (CI) have become significant global disease and medical burdens. There have been several reports documenting the alterations in regional brain function and their correlation with CI in CAD patients. However, there is limited research on the changes in brain network connectivity in CAD patients. To investigate the resting-state connectivity and further understand the effective connectivity strength and directionality in patients with CAD, we utilized degree centrality (DC) and spectral dynamic causal modeling (spDCM) to detect functional hubs in the whole brain network, followed by an analysis of directional connections. Using the aforementioned approaches, it is possible to investigate the hub regions and aberrant connections underlying the altered brain function in CAD patients, providing neuroimaging evidence for the cognitive decline in patients with coronary artery disease. Materials and Methods This study was prospectively conducted involving 24 patients diagnosed with CAD and 24 healthy controls (HC) who were matched in terms of age, gender, and education. Functional MRI (fMRI) scans were utilized to investigate brain activity in these individuals. Neuropsychological examinations were performed on all participants. DC analysis and spDCM were employed to investigate abnormal brain networks in patients with CAD. Additionally, the association between effective connectivity strength and cognitive function in patients with CAD was examined based on the aforementioned results. Results By assessing cognitive functions, we discovered that patients with CAD exhibited notably lower cognitive function compared to the HC group. By utilizing DC analysis and spDCM, we observed significant reductions in DC values within the left parahippocampal cortex (PHC) and the left medial temporal gyrus (MTG) in CAD patients when compared to the control group. In terms of effective connectivity, we observed the absence of positive connectivity between the right superior frontal gyrus (SFG) and PHC in CAD patients. Moreover, there was an increase in negative connectivity from PHC and MTG to SFG, along with a decrease in the strength of positive connectivity between PHC and MTG. Furthermore, we identified a noteworthy positive correlation (r = 0.491, p = 0.015) between the strength of connectivity between the PHC and the MTG and cognitive function in CAD patients. Conclusions These research findings suggest that alterations in the connectivity of the brain networks involving SFG, PHC, and MTG in CAD patients may mediate changes in cognitive function.

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Cite This Study

Qin et al. (2023) conducted a case-control in Coronary artery disease (n=48). Coronary artery disease vs. Healthy controls was evaluated on Brain network connectivity and cognitive function (r = 0.491, p=0.015). Coronary artery disease was associated with altered brain network connectivity, which correlated positively with cognitive function (r=0.491, p=0.015).

synapsesocial.com/papers/6a2058714e385cdd48e72665https://doi.org/10.7717/peerj.16408
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