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Mouse Models for Graft Arteriosclerosis
Published on: May 14, 2013
High-risk plaques in proximal and distal segments relative to graft anastomoses and non-grafted segments
Pruthvi C Revaiah1, Tsung-Ying Tsai1, Jacopo Farina2
1CORRIB Research Centre for Advanced Imaging and Core Laboratory, University of Galway, Ireland.
Insights
Coronary artery bypass grafting (CABG) effectively bypasses high-risk plaques (HRPs) in complex coronary artery disease (CAD). However, a significant number of HRPs remain in non-grafted vessels, indicating potential residual risk.
Area of Science:
- Cardiovascular Imaging
- Interventional Cardiology
- Biomedical Engineering
Background:
- Coronary artery bypass grafting (CABG) is a primary treatment for complex coronary artery disease (CAD).
- High-risk plaques (HRPs) are associated with adverse cardiovascular events.
- Understanding HRP distribution after CABG is crucial for risk stratification.
Purpose of the Study:
- To evaluate the prevalence of HRPs in segments proximal and distal to graft anastomoses.
- To assess HRP distribution in non-grafted segments.
- To analyze HRPs in relation to graft patency and perivascular adipose tissue attenuation.
Main Methods:
- Coronary computed tomography angiography (CCTA) was used to analyze coronary segments.
- Segments were classified as proximal, distal, or non-grafted.
- HRP features, minimal lumen area, plaque burden, and perivascular adipose tissue attenuation were assessed.
Main Results:
- HRP prevalence was significantly higher in proximal segments (45.13%) compared to distal (8.33%) and non-grafted (28.74%) segments.
- A substantial proportion of HRPs were found in non-grafted vessels.
- No significant difference in HRP prevalence was observed between patients with graft occlusions versus those without, or in perivascular fat attenuation.
Conclusions:
- CABG effectively bypasses most HRPs in patients with complex CAD.
- A considerable number of HRPs persist in non-grafted vessels, suggesting potential residual cardiovascular risk.
- Further investigation is needed to manage HRPs in non-grafted segments post-CABG.
Background:
Coronary artery bypass grafting (CABG) is the preferred invasive treatment option for complex coronary artery disease (CAD), bypassing flow-limiting lesions and high-risk plaques (HRP), thereby reducing clinical events. It also provides graft collateralization, preventing cardiac events due to proximal plaque rupture or erosion, and vessel occlusion. This study evaluated the prevalence of HRPs in segments proximal and distal to graft anastomoses and in non-grafted segments, using coronary computed tomography angiography (CCTA) in patients with left main and three-vessel disease enrolled in the FASTTRACK CABG study.
Methods:
Coronary segments were categorized as proximal, distal, or non-grafted. Segments ≥1.5 mm on CCTA were screened for HRP features: low-attenuation plaque, positive remodelling, spotty calcification, and napkin ring. Minimal lumen area (MLA) and plaque burden at MLA were assessed in segments ≥3 mm in diameter. Perivascular adipose tissue attenuation was evaluated in major coronary arteries.
Results:
In 102 patients, 1767 segments were analyzed: 986 proximal, 348 distal, and 341 non-grafted. HRP prevalence was highest in proximal segments (45.13 % vs. 8.33 % distal vs. 28.74 % non-grafted, p < 0.001). Non-grafted vessels with a Fractional Flow Reserve Computed Tomography (FFRCT) ≥0.80 had High-Risk Plaques (HRPs) in 40.38 % of cases, compared to 32.58 % for those with an FFRCT <0.80. The prevalence of HRPs between patients or vessels with graft occlusions and those without, was similar. Likewise, there was no significant difference in perivascular fat attenuation between patients and vessels with and without HRP.
Conclusions:
In patients undergoing CABG for complex CAD, surgery effectively bypassed most HRPs, however, a substantial proportion remained in non-grafted vessels.
Trial Registration:
NCT04142021.
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