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Updated: Apr 12, 2026

Ultrasonic Assessment of Myocardial Microstructure
Published on: January 14, 2014
Ultrasound tissue characterization of vulnerable atherosclerotic plaque
Eugenio Picano1, Marco Paterni2
1Biomedicine Department, NU School of Medicine, Astana 010000, Kazakistan. picano@ifc.cnr.it.
Insights
Identifying vulnerable atherosclerotic plaque using ultrasound tissue characterization can predict cardiovascular events. This method analyzes plaque texture to distinguish high-risk plaques from stable ones, aiding early detection and treatment.
Area of Science:
- Cardiovascular Imaging
- Medical Ultrasound
- Atherosclerosis Research
Background:
- Atherosclerotic plaques can rupture, leading to serious cardiovascular events like stroke.
- Identifying high-risk or vulnerable plaques before symptoms appear has been a significant clinical challenge.
Purpose of the Study:
- To explore the utility of ultrasound tissue characterization for identifying vulnerable atherosclerotic plaques.
- To correlate plaque ultrasound morphology with clinical event proneness.
Main Methods:
- Utilized various ultrasound techniques (vascular, transesophageal, intravascular) for plaque imaging.
- Analyzed plaque textural patterns (hypoechoic, iso/moderately hyperechoic, markedly hyperechoic with shadowing).
- Correlated plaque features like neovascularization and surface irregularities with clinical risk.
Main Results:
- Hypoechoic, dishomogeneous plaques with microcalcifications and irregularities are more prone to complications.
- Hyperechoic, calcified, homogeneous plaques with smooth surfaces indicate lower risk.
- Plaque morphology and geometry are crucial for assessing atherosclerotic prognostic burden.
Conclusions:
- Ultrasound tissue characterization offers a promising approach for early detection of vulnerable atherosclerotic disease.
- Further development of quantitative ultrasound methods will enhance diagnostic capabilities.
- This technique holds potential for guiding early treatment strategies in cardiovascular medicine.
Abstract:
A thrombotic occlusion of the vessel fed by ruptured coronary atherosclerotic plaque may result in unstable angina, myocardial infarction or death, whereas embolization from a plaque in carotid arteries may result in transient ischemic attack or stroke. The atherosclerotic plaque prone to such clinical events is termed high-risk or vulnerable plaque, and its identification in humans before it becomes symptomatic has been elusive to date. Ultrasonic tissue characterization of the atherosclerotic plaque is possible with different techniques--such as vascular, transesophageal, and intravascular ultrasound--on a variety of arterial segments, including carotid, aorta, and coronary districts. The image analysis can be based on visual, video-densitometric or radiofrequency methods and identifies three distinct textural patterns: hypo-echoic (corresponding to lipid- and hemorrhage-rich plaque), iso- or moderately hyper-echoic (fibrotic or fibro-fatty plaque), and markedly hyperechoic with shadowing (calcific plaque). Hypoechoic or dishomogeneous plaques, with spotty microcalcification and large plaque burden, with plaque neovascularization and surface irregularities by contrast-enhanced ultrasound, are more prone to clinical complications than hyperechoic, extensively calcified, homogeneous plaques with limited plaque burden, smooth luminal plaque surface and absence of neovascularization. Plaque ultrasound morphology is important, along with plaque geometry, in determining the atherosclerotic prognostic burden in the individual patient. New quantitative methods beyond backscatter (to include speed of sound, attenuation, strain, temperature, and high order statistics) are under development to evaluate vascular tissues. Although not yet ready for widespread clinical use, tissue characterization is listed by the American Society of Echocardiography roadmap to 2020 as one of the most promising fields of application in cardiovascular ultrasound imaging, offering unique opportunities for the early detection and treatment of atherosclerotic disease.
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