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Updated: Jul 8, 2025

Three-Dimensional Imaging of Aortic Tissues in Atherosclerosis
Published on: October 25, 2024
Structural and Functional Disturbances of the Thoracic Aorta in Atherosclerosis of Various Gradations
A V Vrublevsky1, A A Boshchenko1, Yu I Bogdanov1
1Research Institute of Cardiology, Tomsk National Research Medical Center of the Russian Academy of Sciences, Tomsk.
Insights
Global aortic circumferential strain (GCS) and GCS normalized to pulse arterial pressure (PAP) effectively predict thoracic aorta and coronary atherosclerosis. These non-invasive markers indicate the severity of aortic and coronary artery disease.
Area of Science:
- Cardiovascular Imaging
- Atherosclerosis Research
- Echocardiography
Background:
- Atherosclerosis affects the thoracic aorta (TA) and coronary arteries (CAs), leading to structural and functional disorders.
- Early detection and prediction of atherosclerosis severity are crucial for patient management.
- Global aortic circumferential strain (GCS) is a potential marker for cardiovascular health.
Purpose of the Study:
- To evaluate global aortic circumferential strain (GCS) in normal conditions and varying grades of thoracic aorta (TA) atherosclerosis.
- To determine the predictive role of GCS and GCS normalized to pulse arterial pressure (PAP) for TA and coronary atherosclerosis.
- To assess GCS and GCS/PAP as predictors of structural and functional disorders using 2D speckle-tracking transesophageal echocardiography.
Main Methods:
- 182 patients with angina and 11 healthy volunteers were examined using 2D speckle-tracking transesophageal echocardiography.
- Thoracic aorta (TA) atherosclerosis was staged, and atheroma height/plaque number were measured.
- Global peak systolic circumferential strain (GCS) and GCS normalized to pulse arterial pressure (GCS/PAP) were calculated; coronary angiography was performed.
Main Results:
- GCS and GCS/PAP significantly decreased with increasing stages of TA atherosclerosis compared to controls.
- GCS and GCS/PAP demonstrated high accuracy in predicting intact TA and hemodynamically significant TA atherosclerosis (stages 3-5).
- Lower GCS and GCS/PAP values predicted hemodynamically significant coronary atherosclerosis and severe/advanced coronary atherosclerosis (SYNTAX Score ≥22).
Conclusions:
- GCS and GCS/PAP are novel diagnostic markers for structural and functional disorders in TA atherosclerosis.
- GCS/PAP is a highly significant independent predictor of high-grade TA atherosclerosis (stages 3-5).
- GCS and GCS/PAP serve as non-invasive predictors for severe and advanced coronary artery atherosclerosis.
Abstract:
Aim To study global aortic circumferential strain in normal conditions and in atherosclerosis of various grades and to determine its role in prediction of structural and functional disorders of the thoracic aorta (TA) and coronary atherosclerosis using 2D speckle-tracking transesophageal echocardiography.Material and methods 182 patients with typical or probable angina were examined. The control group consisted of 11 healthy volunteers. TA was visualized along its entire length. The height of each atheroma was measured, and the total number of plaques in the TA was determined. Five stages of TA atherosclerosis were identified. In the descending TA, the global peak systolic circumferential strain (GCS, %) and the global peak systolic circumferential strain normalized to pulse arterial pressure (PAP) (GCS / PAP∙100) were calculated. All patients underwent coronary angiography. The number of coronary arteries (CAs) with >50 % stenosis was determined, and the SYNTAX Score was calculated.Results TA atherosclerosis was not detected in the control group. Among 182 patients, stage 1-5 TA atherosclerosis was found in 23 (12.6 %), 103 (56.6 %), 43 (23.6 %), 7 (3.8 %), and 6 (3.4 %) cases respectively. GCS and GCS / PAD decreased as the ultrasound stage of TA atherosclerosis increased as compared with the control group: 9.2 % and 15.3 for the control group; stage 1, 5.6 % and 8.9 (p<0.001); stage 2, 4.1 % and 5.9 (p<0.001); stage 3, 4 % and 5.8 (p<0.001); stage 4, 3.7 % and 4.9 (p<0.01); and stage 5, 2.6 % and 3.3 (p<0.01), respectively. ROC analysis showed that GCS ≥5.9 % (area under the curve, AUC, 0.94±0.03; p<0.001) and GCS / PAD ≥11.4 (AUC, 0.97±0.02; p <0.001) were predictors of intact TA. Also, GCS ≤4.85 % (AUC, 0.82±0.04; p<0.001) and GCS / PAD ≤8.06 (AUC, 0.87±0.03; p<0.001) were predictors of hemodynamically significant TA atherosclerosis (stages 3-5). GCS ≤4.05 % (AUC, 0.62±0.04; p=0.007) and GCS / PAD ≤5.95 (AUC, 0.61±0.04; p=0.018) were predictors of hemodynamically significant (>50 %) stenosing atherosclerosis of at least one CA. Furthermore, GCS ≤3.75 % (AUC, 0.67±0.07; p=0.039) and GCS / PAD ≤5.15 (AUC, 0.64±0.07; p=0.045) were predictors of severe and advanced coronary atherosclerosis (SYNTAX Score ≥22).Conclusion GCS and GCS / PAD are new diagnostic markers of structural and functional disorders of TA in atherosclerosis of various grades. GCS and GCS / PAD are independent predictors of high-grade TA atherosclerosis (stages 3-5) with GCS / PAD demonstrating the highest level of significance. GCS and GCS / PAD are non-invasive predictors of severe and advanced CA atherosclerosis.
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