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Updated: Sep 11, 2025

Optical Coherence Tomography Based Biomechanical Fluid-Structure Interaction Analysis of Coronary Atherosclerosis Progression
Published on: January 15, 2022
Influence of specific components of pericardial fat on coronary high-risk plaque prediction
Lihong Nan1, Tongli Li2, Wenyu Ding2
1Department of Breast Imaging, Tianjin Medical University Cancer Institute and Hospital, National Clinical Research Center for Cancer, Tianjin's Clinical Research Center for Cancer, Key Laboratory of Cancer Prevention and Therapy, Key Laboratory of Breast Cancer Prevention and Therapy, Tianjin Medical University, Ministry of Education, Tianjin, China.
Insights
Pericardial fat (PF), particularly white adipose tissue (WAT), is linked to high-risk plaques (HRP) in coronary artery disease (CAD) patients. Increased WAT volume may predict HRP, offering new insights into CAD progression.
Area of Science:
- Cardiovascular Imaging
- Metabolic Research
- Radiology
Background:
- Coronary artery disease (CAD) involves complex interactions between adipose tissue and plaque development.
- Pericardial fat (PF) comprises white adipose tissue (WAT) and brown adipose tissue (BAT), with potential roles in cardiovascular risk.
- High-risk plaques (HRP) are key indicators of adverse cardiovascular events.
Purpose of the Study:
- To investigate the association between PF components (WAT, BAT) and HRP in CAD patients.
- To explore the mediating role of PF in the relationship between metabolic status and HRP.
- To provide novel imaging evidence for predicting adverse events in CAD.
Main Methods:
- Retrospective analysis of 107 CAD patients' clinical and imaging data.
- Quantification of coronary artery calcium scores (CACS), PF, WAT, BAT, and pericardial fat attenuation (PFatt) using CT.
- Coronary computed tomography angiography (CCTA) for myocardial ischemia and HRP assessment; CT-derived fractional flow reserve (CT-FFR) for lesion-specific ischemia.
Main Results:
- Patients with HRP exhibited significantly higher PF, WAT, and BAT volumes compared to those without HRP.
- Inclusion of WAT in risk models significantly improved the prediction of HRP (AUC increased from 0.655 to 0.789).
- PF mediated 95.19% of the total effect of clinical risk factors on HRP.
Conclusions:
- Pericardial fat, especially WAT, is significantly associated with high-risk plaques in CAD.
- WAT accumulation, influenced by clinical risk factors, may serve as a potential predictor of HRP.
- This study highlights the importance of adipose tissue characterization in cardiovascular risk assessment.
Background:
Coronary computed tomography angiography (CCTA) can be used to investigate the relationship between white adipose tissue (WAT) and brown adipose tissue (BAT) in pericardial fat (PF) and high-risk plaques (HRP) in patients with coronary artery disease (CAD). This study aimed to explore the association between specific components of PF and HRP/culprit ischemic plaques, as well as their mediating role in overall metabolic status, providing new imaging evidence for predicting adverse events in CAD.
Methods:
The clinical risk factors and imaging images of 107 CAD patients were retrospectively analyzed. Quantification of coronary artery calcium scores (CACS), PF, WAT, BAT, and pericardial fat attenuation (PFatt) were performed on non-contrast CT images. CCTA was used to evaluate myocardial ischemia and the presence of HRP. Fractional flow reserve derived from CCTA (CT-FFR) was performed in three major coronary arteries, with a threshold of ≤0.80 considered indicative of the presence of lesion-specific ischemia. HRP was defined as the presence of at least two of the four HRP features including positive remodeling (PR), low attenuation, napkin-ring sign (NRS), and spotty calcification. Mediator analysis was performed using Hayes (2018) Model-4.
Results:
A total of 107 CAD patients aged 65±8 years were included in this study. There were 49 patients (45.79%) with HRP and 57 patients (53.27%) with lesion-specific ischemia (CT-FFR ≤0.80). PF including WAT and BAT in the HRP group was significantly higher than that in the non-HRP group (PF: 241.28 vs. 204.94 cm3, P=0.005, WAT: 91.78 vs. 78.40 cm3, P=0.002, BAT: 56.25 vs. 46.71 cm3, P=0.008). Adding WAT to meaningful clinical risk factors and CACS increases the area under the curve (AUC) for HRP prediction {AUC [95% confidence interval (95% CI)]: 0.789 (0.692-0.887) vs. 0.655 (0.535-0.775), P<0.05}. Interestingly, adding PF to clinical risk factors and CACS decreased the AUC for the prediction of lesion-specific ischemia with no significant difference (P=0.083) [AUC (95% CI): 0.705 (0.592-0.817) vs. 0.796 (0.696-0.897), P<0.05]. Additionally, the mediation effect of PF accounted for 95.19% of the total effect of clinical risk factors on HRP (P<0.05).
Conclusions:
PF is associated with HRP, and clinical risk factors increase the risk of plaque rupture by promoting PF volume accumulation, especially WAT, which may be a potential predictor of HRP.
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