open access

Vol 27, No 4 (2020)
Editorial
Submitted: 2020-07-02
Accepted: 2020-07-02
Published online: 2020-09-10
Get Citation

Morphology and physiology together: Is optical coherence tomography the one-stop-shop of invasive cardiology?

Carlo Di Mario1, Pierluigi Demola1
·
Pubmed: 32929703
·
Cardiol J 2020;27(4):345-346.
Affiliations
  1. Structural Interventional Cardiology, Careggi University Hospital, Florence, Italy

open access

Vol 27, No 4 (2020)
Editorial
Submitted: 2020-07-02
Accepted: 2020-07-02
Published online: 2020-09-10

Abstract

Not available

Abstract

Not available
Get Citation
About this article
Title

Morphology and physiology together: Is optical coherence tomography the one-stop-shop of invasive cardiology?

Journal

Cardiology Journal

Issue

Vol 27, No 4 (2020)

Article type

Editorial

Pages

345-346

Published online

2020-09-10

Page views

849

Article views/downloads

773

DOI

10.5603/CJ.2020.0111

Pubmed

32929703

Bibliographic record

Cardiol J 2020;27(4):345-346.

Authors

Carlo Di Mario
Pierluigi Demola

References (9)
  1. Gould KL, Lipscomb K, Hamilton GW. Physiologic basis for assessing critical coronary stenosis. Instantaneous flow response and regional distribution during coronary hyperemia as measures of coronary flow reserve. Am J Cardiol. 1974; 33(1): 87–94.
  2. Maron DJ, Hochman JS, Reynolds HR, et al. ISCHEMIA Research Group. Initial Invasive or Conservative Strategy for Stable Coronary Disease. N Engl J Med. 2020; 382(15): 1395–1407.
  3. De Bruyne B, Pijls NHJ, Kalesan B, et al. FAME 2 Trial Investigators. Fractional flow reserve-guided PCI versus medical therapy in stable coronary disease. N Engl J Med. 2012; 367(11): 991–1001.
  4. Zimmermann FM, Omerovic E, Fournier S, et al. Fractional flow reserve-guided percutaneous coronary intervention vs. medical therapy for patients with stable coronary lesions: meta-analysis of individual patient data. Eur Heart J. 2019; 40(2): 180–186.
  5. Gutiérrez-Chico JL, Chen Y, Yu W, et al. Diagnostic accuracy and reproducibility of optical flow ratio for functional evaluation of coronary stenosis in a prospective series. Cardiol J. 2020 [Epub ahead of print].
  6. Cook CM, Jeremias A, Petraco R, et al. Fractional flow reserve/instantaneous wave-free ratio discordance in angiographically intermediate coronary stenoses: an analysis using doppler-derived coronary flow measurements. JACC Cardiovasc Interv. 2017; 10(24): 2514–2524.
  7. Jeremias A, Davies JE, Maehara A, et al. Blinded physiological assessment of residual ischemia after successful angiographic percutaneous coronary intervention: the DEFINE PCI study. JACC Cardiovasc Interv. 2019; 12(20): 1991–2001.
  8. Davies JE, Sen S, Dehbi HM, et al. Use of the instantaneous wave-free ratio or fractional flow reserve in PCI. N Engl J Med. 2017; 376(19): 1824–1834.
  9. Escaned J, Ryan N, Mejía-Rentería H, et al. Safety of the deferral of coronary revascularization on the basis of instantaneous wave-free ratio and fractional flow reserve measurements in stable coronary artery disease and acute coronary syndromes. JACC Cardiovasc Interv. 2018 ; 11(15): 1437–1449.

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