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Updated: Jun 23, 2026

Imaging In-Stent Restenosis: An Inexpensive, Reliable, and Rapid Preclinical Model
Published on: September 14, 2009
Role of Intracoronary Imaging in Percutaneous Coronary Intervention for In-Stent Restenosis: A Prospective
Ramya Das Nageri Kunnath1, Pulugundla Varun1, Sharath Nagesh1
1Department of Cardiology, Sree Chitra Tirunal Institute for Medical Sciences and Technology, Thiruvananthapuram, Kerala, India.
Insights
Intracoronary imaging, including intravascular ultrasound (IVUS) and optical coherence tomography (OCT), effectively identified mechanisms of in-stent restenosis (ISR). This imaging guidance significantly altered treatment strategies during percutaneous coronary intervention (PCI) for ISR.
Area of Science:
- Cardiovascular Medicine
- Interventional Cardiology
- Medical Imaging
Background:
- In-stent restenosis (ISR) is a major cause of repeat revascularization despite advances in stent technology.
- Coronary angiography has limitations in determining the specific mechanism of ISR.
- Intravascular ultrasound (IVUS) and optical coherence tomography (OCT) offer enhanced visualization for mechanism-based decision-making.
Purpose of the Study:
- To evaluate the impact of intracoronary imaging on identifying ISR mechanisms.
- To assess how imaging influences treatment strategies during ISR percutaneous coronary intervention (PCI).
Main Methods:
- Prospective observational study of 34 patients with 40 ISR lesions.
- Utilized IVUS or OCT for systematic intracoronary imaging analysis.
- Classified ISR lesions as mechanically driven or tissue-proliferative based on imaging findings.
Main Results:
- Intracoronary imaging revealed mechanical and tissue-proliferative ISR in equal proportions (50% each).
- Imaging guided escalation of lesion modification in 50% of cases.
- Treatment strategy shifted significantly, with drug-eluting stent (DES) implantation increasing from 15% to 50% post-imaging.
Conclusions:
- Both mechanical and tissue-proliferative mechanisms are significant contributors to ISR.
- Intracoronary imaging (IVUS/OCT) clarifies ISR mechanisms, guides lesion preparation, and modifies treatment strategies.
- Further studies are needed to confirm if imaging-guided ISR PCI improves clinical outcomes.
Background:
Despite advances in contemporary stent technology and procedural techniques, in-stent restenosis (ISR) remains a clinically significant cause of repeat revascularization. Coronary angiography, although the standard diagnostic modality, has limited ability to identify the underlying mechanism of ISR. Intravascular ultrasound (IVUS) and optical coherence tomography (OCT) may improve mechanism-based decision-making and procedural optimization. This study aimed to evaluate the impact of intracoronary imaging on ISR mechanism identification and treatment strategy during ISR percutaneous coronary intervention (PCI).
Methods:
This prospective observational study included 34 patients with 40 ISR lesions (60 previously implanted stents) undergoing IVUS- or OCT-guided PCI at a tertiary care center. Patients underwent detailed assessment of cardiovascular risk factors, angiographic classification of ISR, and systematic intracoronary imaging analysis. ISR lesions were classified as mechanically driven or tissue-proliferative based on imaging findings. The primary objective was to assess the impact of imaging on lesion preparation and definitive treatment strategy.
Results:
The mean age was 63 years, and 82.4% were male. Diffuse ISR was present in 57.5% of lesions. Intracoronary imaging identified mechanical and tissue-proliferative ISR in equal proportions (50% each). Mechanical ISR was more frequently associated with earlier presentation and structural complexity, including multisegment involvement and stent overlap zones. Intravascular imaging led to escalation of lesion modification strategies in 50% of lesions. Before imaging, drug-eluting balloon (DEB) therapy was planned in 55% and drug-eluting stent (DES) implantation in 15% of cases. Following imaging, DES implantation was performed in 50% of lesions, representing a significant shift in treatment strategy (McNemar test, P = 0.021).
Conclusion:
Both mechanical and tissue-proliferative mechanisms contributed substantially to ISR. Intracoronary imaging clarified the dominant ISR mechanism, guided lesion preparation, and modified definitive treatment strategy. These findings suggest a mechanism-based role for IVUS/OCT in lesion assessment and procedural planning during ISR PCI. Larger comparative studies with longer follow-up are required to determine whether imaging-guided ISR PCI improves clinical outcomes.
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