Two birds with one stone: integrated assessment of coronary physiology and plaque vulnerability from a single angiographic view—a case report

Author:

Fezzi Simone12ORCID,Huang Jiayue13ORCID,Wijns William1,Tu Shengxian3,Ribichini Flavio2

Affiliation:

1. The Lambe Institute for Translational Medicine, The Smart Sensors Lab and Curam, University of Galway , University Road, H91 TK33 Galway , Ireland

2. Division of Cardiology, Department of Medicine, University of Verona , Piazzale Aristide Stefani, 1, 37126 Verona , Italy

3. Biomedical Instrument Institute, School of Biomedical Engineering, Shanghai Jiao Tong University , Shanghai , China

Abstract

Abstract Background Physiology-guided coronary revascularization was shown to improve clinical outcomes in multiple patient subsets, whilst in those presenting with acute coronary syndromes, it seems to be associated with an excess of cardiovascular events. One of the major drawbacks in this setting is the potential deferral of non–flow-limiting but ‘vulnerable’ coronary plaques. Case summary A 40-year-old patient presented with a myocardial infarction without ST-segment elevation (NSTEMI). At the invasive coronary angiography (ICA) a sub-occlusive stenosis on his left circumflex artery was detected and treated with percutaneous coronary intervention (PCI). The treatment of a concomitant intermediate eccentric focal stenosis on the right coronary artery (RCA) was deferred after a negative pressure wire–based physiological assessment. The patient was re-admitted 9 months later due to a recurrent NSTEMI, and a severe progression of the deferred RCA lesion was found at the ICA. In retrospect, an angiography-based assessment of physiological severity and plaque vulnerability of the non-culprit RCA stenosis by means of Murray’s law–based QFR (μQFR) and radial wall strain (RWS) was performed. At baseline, μQFR value (0.90) corroborated the non-ischaemic findings of wire-based assessment. However, RWS analysis showed a marked hotspot (maximum RWS value 27.7%), indicating the presence of a vulnerable plaque. Discussion Radial wall strain is a novel biomechanical deformation index derived from coronary angiography. Segments with high RWS are associated with lipid-rich plaques that are prone to progression and plaque rupture. Therefore, the identification of RWS hotspots might potentially improve the risk stratification of non-culprit lesions and empower secondary prevention strategies.

Funder

Science Foundation Ireland

Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Cardiology and Cardiovascular Medicine

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