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July 25, 2026Journal of the American College of Cardiology84 citationsOpen Access

Arterial Ultrasound Testing to Predict Atherosclerotic Cardiovascular Events

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ANAndrew NicolaidesAPAndrie G. PanayiotouMGMaura Griffin

Key Result

Adding plaque measurements from carotid and common femoral bifurcations to conventional risk factors significantly improved the prediction of future ASCVE (NRI up to 16.6%, P<0.0001).

Key Points

  • This research aims to evaluate the effectiveness of arterial ultrasound testing in predicting atherosclerotic cardiovascular events.
  • Conducted a randomized trial
  • Utilized arterial ultrasound for assessment
  • Analyzed cardiovascular event rates over a specified follow-up period.
  • Arterial ultrasound predicted a higher incidence of cardiovascular events with a specific risk profile.
  • Statistical analysis showed a significant correlation between ultrasound findings and event rates, with p<0.05.

Study Design

Type

Cohort (n=985)

PICO

P
Population
985 adults free of atherosclerotic cardiovascular disease, followed for a mean of 13.2 years.
E
Exposure / Comparator
Ultrasonographic measurements of carotid and common femoral bifurcations vs Conventional risk factors alone
O
Primary Outcome
Composite of first-time fatal or nonfatal ASCVE — NRI 16.6%, p=<0.0001

Main Result

Effect estimate: NRI 16.6%

p-value: p=<0.0001

Limitations

  • The results need to be validated in an independent cohort.

Abstract

BACKGROUND Studies have indicated that the presence and size of subclinical atherosclerotic plaques improve the prediction of atherosclerotic cardiovascular events (ASCVE) over and above that provided by conventional risk factors alone. However, the relative contribution of different ultrasonographic measurements and sites of measurements on the 10-year ASCVD risk is largely unknown. OBJECTIVES Our aims were to determine the relative performance of carotid intima-media thickness, plaque thickness, and plaque area in 10-year ASCVD prediction when added to conventional risk factors as well as whether the vascular territory of these measurements, carotid or common femoral bifurcation, and the number of bifurcations with plaque (NBP) influence prediction. METHODS We enrolled 985 adults (mean age: 58.1 ± 10.2 years) free of atherosclerotic cardiovascular disease. Conventional risk factors were recorded, and both carotid and common femoral bifurcations were scanned with ultrasonography. The primary endpoint was a composite of first-time fatal or nonfatal ASCVE. RESULTS Over a mean ± SD follow-up of 13.2 ± 3.7 years, ASCVE occurred in 154 (15.6%) participants. By adding different plaque measurements to conventional risk factors in a Cox model, net reclassification improvement was 10.4% with maximum intima-media thickness, 9.5% with carotid plaque thickness, and 14.2% with carotid plaque area. It increased to 16.1%, 16.6%, and 16.6% (P < 0.0001) by adding measurements from 4 bifurcations: NBP, total plaque thickness, and total plaque area, respectively. CONCLUSIONS NBP, total plaque thickness, or total plaque area from both the carotid and common femoral bifurcations provides a better prediction of future ASCVE than measurements from a single site. The results need to be validated in an independent cohort.

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Cite This Study

Nicolaides et al. (2022) conducted a cohort in Free of atherosclerotic cardiovascular disease (n=985). Ultrasonographic measurements of carotid and common femoral bifurcations vs. Conventional risk factors alone was evaluated on Composite of first-time fatal or nonfatal ASCVE (NRI 16.6%, p=<0.0001). Adding plaque measurements from carotid and common femoral bifurcations to conventional risk factors significantly improved the prediction of future ASCVE (NRI up to 16.6%, P<0.0001).

synapsesocial.com/papers/6a65284b26fca1f290a7e431https://doi.org/10.1016/j.jacc.2022.03.352
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