Carotid intima-media thickness testing as an asymptomatic cardiovascular disease identifier and method for making
1Heart Attack and Stroke Prevention Center, Spokane, WA 99204, USA. adoneen@baledoneen.com
Insights
Carotid intima-media thickness (CIMT) testing offers a practical way to assess cardiovascular disease risk by detecting arterial wall changes. This method aids clinical decisions and drug efficacy trials, though its role in risk stratification is debated.
Area of Science:
- Cardiology
- Vascular Biology
- Diagnostic Imaging
Background:
- Cardiovascular disease (CVD) is a leading cause of death, with current risk prediction methods sometimes failing to identify all at-risk patients.
- Atheromas are absolute predictors of atherothrombotic events, highlighting the need for accurate risk assessment.
- Existing risk factor analyses may not identify all individuals who will experience a cardiovascular event.
Purpose of the Study:
- To clarify the utility of Carotid intima-media thickness (CIMT) testing in cardiovascular disease risk classification.
- To reexamine the usefulness of CIMT testing in assessing the efficacy of cardiovascular therapies.
- To evaluate CIMT as a method for identifying patients at risk for cardiovascular events.
Main Methods:
- Carotid intima-media thickness (CIMT) testing using B-mode ultrasound to measure arterial wall layers.
- Identification and quantification of atherosclerotic disease, including plaques and atheromas.
- Analysis of clinical trial data where CIMT changes are used as surrogate endpoints.
Main Results:
- CIMT testing is a safe, simple, and inexpensive method for evaluating cardiovascular risk.
- CIMT can detect arterial wall thickening indicative of accelerated atherosclerotic disease and increased risk for myocardial infarction and stroke.
- Evidence suggests some CVD therapies can slow, stop, or reverse CIMT progression, and CIMT changes may predict future CV events.
Conclusions:
- CIMT testing is a practical supplemental tool for physicians in cardiovascular risk assessment.
- The ability of CIMT to identify and quantify atherosclerosis supports its use as a surrogate endpoint in clinical trials.
- The precise value of CIMT testing in cardiovascular disease risk stratification and therapeutic assessment remains an active area of research and debate.
Abstract:
Cardiovascular disease (CVD) is the leading cause of death and disability in the United States. Although current therapies can reduce the risk for CVD, they are only given to patients who are considered to be at risk, and are therefore only beneficial if a patient's risk is accurately predicted before he or she sustains a cardiovascular (CV) event. Unfortunately, even relatively accurate risk factor analyses, such as the Reynolds Risk Score algorithm, fail to identify some patients who will sustain a CV event within 10 years. In contrast, the presence of an atheroma is an absolute predictor for the potential of an atherothrombotic event to occur, and it is therefore reasonable to anchor clinical decisions based on this knowledge. Carotid intima-media thickness (CIMT) testing via B-mode ultrasound is a safe, simple, and inexpensive method for evaluating CV risk by measuring the combined thickness of the intimal and medial layers of the arterial wall. Use of CIMT testing can also detect marked thickening of the arterial wall, possibly indicating plaques or atheromas that are associated with accelerated atherosclerotic disease and increased risk for coronary artery disease, myocardial infarction, and stroke. These characteristics make CIMT a practical supplemental method that physicians can use when making decisions. Moreover, the ability of CIMT testing to identify and quantify atherosclerotic disease has led to the adoption of CIMT as a surrogate endpoint in clinical trials, allowing the efficacy of new drugs to be assessed much more rapidly than would be possible by focusing solely on CV event or mortality rates. To date, several trials have provided evidence to indicate that some CVD therapies slow, stop, or reverse the progression of CIMT. Although many of these studies show that changes in CIMT predict future CV events, the value of CIMT testing in CVD risk assessment is still vigorously debated. In this article, we clarify the utility of CIMT testing for risk classification and reexamine its usefulness as a method for assessing therapeutic efficacy.
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