Abstract 4365001: Noninvasive Measurement of Coronary Collateral Flow Capacity in Patients with Chronic Total Occlusion: External Counterpulsattion Reduces the Need for High Risk Percutaneous Coronary Intervention

M Michael Merhige (State University of New York at Buffalo, Buffalo, New York, United States) J John Sperrazza (MICHAEL E MERHIGE MD LLC, Tonawanda, New York, United States) D Deborah Lavin (MICHAEL E MERHIGE MD LLC, Tonawanda, New York, United States) M Martha Smiedala (MICHAEL E MERHIGE MD LLC, Tonawanda, New York, United States) L Lina Belmona (MICHAEL E MERHIGE MD LLC, Tonawanda, New York, United States)

Abstract

Background: Percutaneous coronary intervention (PCI) for chronic total occlusion (CTO) is associated with higher procedure time, contrast use, acute complications and restenosis rates compared with non-CTO targets. Noninvasive external counterpulsation (ECP) improves invasively measured collateral flow index, angina and walking time in patients with obstructive CAD. We hypothesized that coronary collateral flow capacity can be measured noninvasively in CTO patients by comparing absolute stress perfusion during vasodilator stress (DIP) which reduces supply side pressure in the collateralized ischemic bed, revealing coronary steal, compared with demand ischemic stress (DBT) which maintains supply side pressure. Methods: Twenty sequential patients found to have CTO at angiography prompted by abnormal quantitative PET myocardial perfusion imaging with vasodilator stress using dipyridamole or regadenoson (QPET-DIP) underwent 35 one-hour sessions of ECP, rather than PCI, followed by demand ischemic stress PET using dobutamine (QPET-DBT). Absolute myocardial perfusion, coronary flow reserve and coronary flow capacity (CFC), were measured using FDA approved HeartSee software. Coronary collateral flow capacity was determined by comparing post-treatment CFC using DBT stress to baseline CFC in the ischemic CTO bed using DIP stress. Results: All patients demonstrated a decrease in the size of the ischemic zone at risk when pretreatment QPET-DIP was compared to post ECP QPET-DBT: from 20.3% LV mass to 3.2% (p<0.001). Minimal whole heart and lowest quadrant perfusion also improved from 0.7 to 1.2 ml/min/g (p<0.001) and 1.3 to 2 ml/min/g (p<0.001) respectively, demonstrating significantly improved bulk flow into the ischemic zone, consistent with robust collateralization. Conclusion: Coronary collateral flow capacity can be measured noninvasively with quantitative PET myocardial perfusion imaging. Initial treatment of CTO patients with ECP is associated with rich collateralization and can obviate the need for high-risk PCI.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue Suppl_3
Published November 04, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (5)

M

Michael Merhige

State University of New York at Buffalo, Buffalo, New York, United States

J

John Sperrazza

MICHAEL E MERHIGE MD LLC, Tonawanda, New York, United States

D

Deborah Lavin

MICHAEL E MERHIGE MD LLC, Tonawanda, New York, United States

M

Martha Smiedala

MICHAEL E MERHIGE MD LLC, Tonawanda, New York, United States

L

Lina Belmona

MICHAEL E MERHIGE MD LLC, Tonawanda, New York, United States