Javascript must be enabled to continue!
Coronary Artery Microcalcification: Imaging and Clinical Implications
View through CrossRef
Strategies to prevent acute coronary and cerebrovascular events are based on accurate identification of patients at increased cardiovascular (CV) risk who may benefit from intensive preventive measures. The majority of acute CV events are precipitated by the rupture of the thin cap overlying the necrotic core of an atherosclerotic plaque. Hence, identification of vulnerable coronary lesions is essential for CV prevention. Atherosclerosis is a highly dynamic process involving cell migration, apoptosis, inflammation, osteogenesis, and intimal calcification, progressing from early lesions to advanced plaques. Coronary artery calcification (CAC) is a marker of coronary atherosclerosis, correlates with clinically significant coronary artery disease (CAD), predicts future CV events and improves the risk prediction of conventional risk factors. The relative importance of coronary calcification, whether it has a protective effect as a stabilizing force of high-risk atherosclerotic plaque has been debated until recently. The extent of calcium in coronary arteries has different clinical implications. Extensive plaque calcification is often a feature of advanced and stable atherosclerosis, which only rarely results in rupture. These macroscopic vascular calcifications can be detected by computed tomography (CT). The resulting CAC scoring, although a good marker of overall coronary plaque burden, is not useful to identify vulnerable lesions prone to rupture. Unlike macrocalcifications, spotty microcalcifications assessed by intravascular ultrasound or optical coherence tomography strongly correlate with plaque instability. However, they are below the resolution of CT due to limited spatial resolution. Microcalcifications develop in the earliest stages of coronary intimal calcification and directly contribute to plaque rupture producing local mechanical stress on the plaque surface. They result from a healing response to intense local macrophage inflammatory activity. Most of them show a progressive calcification transforming the early stage high-risk microcalcification into the stable end-stage macroscopic calcification. In recent years, new developments in noninvasive cardiovascular imaging technology have shifted the study of vulnerable plaques from morphology to the assessment of disease activity of the atherosclerotic lesions. Increased disease activity, detected by positron emission tomography (PET) and magnetic resonance (MR), has been shown to be associated with more microcalcification, larger necrotic core and greater rates of events. In this context, the paradox of increased coronary artery calcification observed in statin trials, despite reduced CV events, can be explained by the reduction of coronary inflammation induced by statin which results in more stable macrocalcification.
Title: Coronary Artery Microcalcification: Imaging and Clinical Implications
Description:
Strategies to prevent acute coronary and cerebrovascular events are based on accurate identification of patients at increased cardiovascular (CV) risk who may benefit from intensive preventive measures.
The majority of acute CV events are precipitated by the rupture of the thin cap overlying the necrotic core of an atherosclerotic plaque.
Hence, identification of vulnerable coronary lesions is essential for CV prevention.
Atherosclerosis is a highly dynamic process involving cell migration, apoptosis, inflammation, osteogenesis, and intimal calcification, progressing from early lesions to advanced plaques.
Coronary artery calcification (CAC) is a marker of coronary atherosclerosis, correlates with clinically significant coronary artery disease (CAD), predicts future CV events and improves the risk prediction of conventional risk factors.
The relative importance of coronary calcification, whether it has a protective effect as a stabilizing force of high-risk atherosclerotic plaque has been debated until recently.
The extent of calcium in coronary arteries has different clinical implications.
Extensive plaque calcification is often a feature of advanced and stable atherosclerosis, which only rarely results in rupture.
These macroscopic vascular calcifications can be detected by computed tomography (CT).
The resulting CAC scoring, although a good marker of overall coronary plaque burden, is not useful to identify vulnerable lesions prone to rupture.
Unlike macrocalcifications, spotty microcalcifications assessed by intravascular ultrasound or optical coherence tomography strongly correlate with plaque instability.
However, they are below the resolution of CT due to limited spatial resolution.
Microcalcifications develop in the earliest stages of coronary intimal calcification and directly contribute to plaque rupture producing local mechanical stress on the plaque surface.
They result from a healing response to intense local macrophage inflammatory activity.
Most of them show a progressive calcification transforming the early stage high-risk microcalcification into the stable end-stage macroscopic calcification.
In recent years, new developments in noninvasive cardiovascular imaging technology have shifted the study of vulnerable plaques from morphology to the assessment of disease activity of the atherosclerotic lesions.
Increased disease activity, detected by positron emission tomography (PET) and magnetic resonance (MR), has been shown to be associated with more microcalcification, larger necrotic core and greater rates of events.
In this context, the paradox of increased coronary artery calcification observed in statin trials, despite reduced CV events, can be explained by the reduction of coronary inflammation induced by statin which results in more stable macrocalcification.
Related Results
Early Onset of Coronary Subclavian Steal Syndrome: A Case Report and Literature Review
Early Onset of Coronary Subclavian Steal Syndrome: A Case Report and Literature Review
Abstract
Introduction
Coronary subclavian steal syndrome (CSSS) is a rare phenomenon that often goes undiagnosed and causes severe complications, including death. This report prese...
e0543 Clinical and coronary angiography characteristics between young (<45) and old (>60) patients with coronary artery disease
e0543 Clinical and coronary angiography characteristics between young (<45) and old (>60) patients with coronary artery disease
Objective
To study the clinical Clinical and coronary angiography characteristics between young (≤45) and old (>60) patients with coronary artery disease.
...
e0425 Clinical and coronary angiography characteristics between young (≤45) and old (>60) patients with coronary artery disease
e0425 Clinical and coronary angiography characteristics between young (≤45) and old (>60) patients with coronary artery disease
Objective
To study the clinical Clinical and coronary angiography characteristics between young (≤45) and old (>60) patients with coronary artery disease.
...
A study on risk factors of coronary artery disease in Chong Qing city
A study on risk factors of coronary artery disease in Chong Qing city
Objective
To investigate the relationship between risk factors and coronary artery disease in Chong Qing city, and to provide scientific basis for preventing and ...
Emerging Evidence of IgG4-Related Disease in Pericarditis: A Systematic Review
Emerging Evidence of IgG4-Related Disease in Pericarditis: A Systematic Review
Abstract
Introduction
Immunoglobulin G4-related disease (IgG4-RD) is a recently identified immune-mediated condition that is debilitating and often overlooked. While IgG4-RD has be...
Abstract P3-01-04: Surgical management of mammographic microcalcification is improved by full field digital mammography (FFDM)
Abstract P3-01-04: Surgical management of mammographic microcalcification is improved by full field digital mammography (FFDM)
Abstract
Background: Preoperative diagnosis of impalpable breast lesions correlates closely with the number of surgical procedures required for treatment. Correct di...
Magnetic resonance measurement of coronary blood flow
Magnetic resonance measurement of coronary blood flow
Magnetic resonance (MR) flow measurement in the coronary artery can be achieved with either a breath‐hold acquisition or a respiration‐triggered acquisition. MR measurements of car...
Complete and incomplete Kawasaki disease: Clinical differences and coronary artery outcome from a national prospective surveillance study in Switzerland
Complete and incomplete Kawasaki disease: Clinical differences and coronary artery outcome from a national prospective surveillance study in Switzerland
IntroductionThe aim of this national prospective surveillance study was to compare the clinical presentation, laboratory findings, treatment, and coronary artery outcome in patient...

