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Computed tomographic angiography in coronary artery disease

  • Patrick W. Serruys
  • , Nozomi Kotoku
  • , Bjarne Nørgaard
  • , Scot Garg
  • , Koen Nieman
  • , Marc Dweck
  • , Jeroen Bax
  • , Juhani Knuuti
  • , Jagat Narula
  • , Divaka Perera
  • , Charles Taylor
  • , Jonathon Leipsic
  • , Edward Nicol
  • , Nicolo Piazza
  • , Carl Schultz
  • , Kakuya Kitagawa
  • , Bernard De Bruyne
  • , Carlos Collet
  • , Kaoru Tanaka
  • , Saima Mushtaq
  • Marta Belmonte, Darius Dudek, Adriana Zlahoda-Huzior, Shengxian Tu, William Wijns, Faisal Sharif, Matthew Budoff, Johan de Mey, Daniele Andreini, Yoshinobu Onuma
  • University of Galway
  • Aarhus University Hospital
  • Royal Blackburn Hospital
  • Stanford University School of Medicine
  • University of Edinburgh
  • Leiden University Medical Center
  • Turku University Hospital
  • Mount Sinai Medical Centre
  • British Heart Foundation
  • HeartFlow, Inc.
  • University of British Columbia
  • Royal Brompton Hospital
  • King's College London
  • McGill University
  • The University of Western Australia
  • Royal Perth Hospital
  • Mie University Graduate School of Medicine
  • Onze-Lieve-Vrouwziekenhuis Ziekenhuis
  • University Hospital Center
  • Universitair Ziekenhuis Brussel
  • IRCCS Centro Cardiologico Monzino
  • University Hospital Krakow
  • Digital Innovations & Robotics Hub
  • AGH University of Science and Technology
  • Shanghai Jiao Tong University
  • Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center
  • IRCCS Galeazzi Sant’Ambrogio
  • University of Milan

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

84 Citations (Scopus)

Abstract

Coronary computed tomographic angiography (CCTA) is becoming the first-line investigation for establishing the presence of coronary artery disease and, with fractional flow reserve (FFRCT), its haemodynamic significance. In patients without significant epicardial obstruction, its role is either to rule out atherosclerosis or to detect subclinical plaque that should be monitored for plaque progression/regression following prevention therapy and provide risk classification. Ischaemic non-obstructive coronary arteries are also expected to be assessed by non-invasive imaging, including CCTA. In patients with significant epicardial obstruction, CCTA can assist in planning revascularisation by determining the disease complexity, vessel size, lesion length and tissue composition of the atherosclerotic plaque, as well as the best fluoroscopic viewing angle; it may also help in selecting adjunctive percutaneous devices (e.g., rotational atherectomy) and in determining the best landing zone for stents or bypass grafts.

Original languageEnglish
Pages (from-to)E1307-E1327
JournalEuroIntervention
Volume18
Issue number16
DOIs
Publication statusPublished - Apr 2023

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • fractional flow reserve
  • MSCT
  • non-invasive imaging

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