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Updated: Apr 19, 2026

Optical Coherence Tomography Based Biomechanical Fluid-Structure Interaction Analysis of Coronary Atherosclerosis Progression
Published on: January 15, 2022
Impaired coronary artery distensibility is an endothelium-dependent process and is associated with vulnerable plaque
Naser Ahmadi1, Juan Ruiz-Garcia2, Fereshteh Hajsadeghi1
1David Geffen School of Medicine, University of California Los Angeles, Los Angeles, CA, USA.
Insights
Impaired coronary artery distensibility index (CDI) is linked to endothelial dysfunction and predicts vulnerable plaque in non-obstructive coronary artery disease (CAD). This finding highlights CDI as a key indicator in early CAD stages.
Area of Science:
- Cardiology
- Vascular Biology
- Medical Imaging
Background:
- Coronary artery disease (CAD) begins with endothelial dysfunction, an early, reversible stage.
- Non-obstructive CAD (<30% stenosis) can still progress and is associated with poor outcomes.
- Identifying early markers of CAD progression and plaque vulnerability is crucial for clinical management.
Purpose of the Study:
- To investigate the association between coronary artery distensibility index (CDI) and endothelial dysfunction.
- To determine if CDI is linked to vulnerable plaque composition in subjects with non-obstructive CAD.
- To assess CDI's role as a predictor of early-stage coronary artery disease characteristics.
Main Methods:
- Seventy-four subjects with non-obstructive CAD were studied.
- Coronary flow reserve (CFR) and CDI were measured during intracoronary infusions (acetylcholine, adenosine).
- Intravascular ultrasound (IVUS) assessed plaque composition and CDI in 154 coronary segments.
Main Results:
- A direct association was found between endothelial dysfunction and impaired CDI.
- CDI strongly correlated with acetylcholine-induced CFR (r² = 0.85, P = 0.0001).
- Impaired CDI independently predicted vulnerable plaque components (necrotic core, fibrofatty) in non-obstructive CAD segments.
Conclusions:
- Impaired coronary artery distensibility index (CDI) is an endothelial-dependent process affecting both coronary segments and microvessels.
- CDI serves as a significant predictor of vulnerable plaque composition in early-stage coronary artery disease.
- This study underscores the clinical relevance of CDI in identifying individuals at risk within the non-obstructive CAD population.
Abstract:
Coronary endothelial-dependent microvascular dysfunction, an early reversible stage of coronary artery disease (CAD), is associated with poor clinical outcome. The current study investigated whether coronary artery distensibility index (CDI) is associated with: (i) coronary endothelial-dependent microvascular dysfunction and (ii) vulnerable plaque composition among subjects with non-obstructive CAD. Seventy-four subjects with non-obstructive CAD (luminal stenosis <30%) were studied. In 20 subjects with and without coronary endothelial-dependent microvascular dysfunction, coronary flow reserve (CFR) of target segment during intracoronary (IC) infusion of acetylcholine (Ach) and bolus injection of adenosine as well as CDI at rest of corresponding target segment were measured. In 54 subjects, plaque compositions and CDI at rest of 154 non-obstructive coronary segments as well as proximal segment without disease were measured by intravascular ultrasound (IVUS). CDI was defined as: [(Early-diastolic cross-sectional-area (CSA) - End-diastolic CSA of target segment)/(end-diastolic CSA of target segment × coronary-pulse-pressure) × 10(3) ]. There is a direct association between endothelial dysfunction and impaired CDI of a coronary segment both in the given coronary segment and corresponding microvessels in which a strong agreement between CDI and CFR Ach (r(2) = 0·85, P = 0·0001) was observed. Multivariable regression-analysis showed that CDI was an independent predictor of the vulnerable plaque characteristics. The risk of impaired CDI was 125% higher in segments with necrotic core and 60% higher in segments with fibrofatty components as compared to normal segments (P = 0·001). In conclusions, the current study reveals that impaired CDI is an endothelial-dependent process of both given coronary segment and corresponding microvessels and is associated with vulnerable plaque composition.
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