Literature DB >> 28290782

Prognostic Value of Combined CT Angiography and Myocardial Perfusion Imaging versus Invasive Coronary Angiography and Nuclear Stress Perfusion Imaging in the Prediction of Major Adverse Cardiovascular Events: The CORE320 Multicenter Study.

Marcus Y Chen1, Carlos E Rochitte1, Armin Arbab-Zadeh1, Marc Dewey1, Richard T George1, Julie M Miller1, Hiroyuki Niinuma1, Kunihiro Yoshioka1, Kakuya Kitagawa1, Hajime Sakuma1, Roger Laham1, Andrea L Vavere1, Rodrigo J Cerci1, Vishal C Mehra1, Cesar Nomura1, Klaus F Kofoed1, Masahiro Jinzaki1, Sachio Kuribayashi1, Arthur J Scholte1, Michael Laule1, Swee Yaw Tan1, John Hoe1, Narinder Paul1, Frank J Rybicki1, Jeffrey A Brinker1, Andrew E Arai1, Matthew B Matheson1, Christopher Cox1, Melvin E Clouse1, Marcelo F Di Carli1, João A C Lima1.   

Abstract

Purpose To compare the prognostic importance (time to major adverse cardiovascular event [MACE]) of combined computed tomography (CT) angiography and CT myocardial stress perfusion imaging with that of combined invasive coronary angiography (ICA) and stress single photon emission CT myocardial perfusion imaging. Materials and Methods This study was approved by all institutional review boards, and written informed consent was obtained. Between November 2009 and July 2011, 381 participants clinically referred for ICA and aged 45-85 years were enrolled in the Combined Noninvasive Coronary Angiography and Myocardial Perfusion Imaging Using 320-Detector Row Computed Tomography (CORE320) prospective multicenter diagnostic study. All images were analyzed in blinded independent core laboratories, and a panel of physicians adjudicated all adverse events. MACE was defined as revascularization (>30 days after index ICA), myocardial infarction, or cardiac death; hospitalization for chest pain or congestive heart failure; or arrhythmia. Late MACE was defined similarly, except for patients who underwent revascularization within the first 182 days after ICA, who were excluded. Comparisons of 2-year survival (time to MACE) used standard Kaplan-Meier curves and restricted mean survival times bootstrapped with 2000 replicates. Results An MACE (49 revascularizations, five myocardial infarctions, one cardiac death, nine hospitalizations for chest pain or congestive heart failure, and one arrhythmia) occurred in 51 of 379 patients (13.5%). The 2-year MACE-free rates for combined CT angiography and CT perfusion findings were 94% negative for coronary artery disease (CAD) versus 82% positive for CAD and were similar to combined ICA and single photon emission CT findings (93% negative for CAD vs 77% positive for CAD, P < .001 for both). Event-free rates for CT angiography and CT perfusion versus ICA and single photon emission CT for either positive or negative results were not significantly different for MACE or late MACE (P > .05 for all). The area under the receiver operating characteristic curve (AUC) for combined CT angiography and CT perfusion (AUC = 68; 95% confidence interval [CI]: 62, 75) was similar (P = .36) to that for combined ICA and single photon emission CT (AUC = 71; 95% CI: 65, 79) in the identification of MACE at 2-year follow-up. Conclusion Combined CT angiography and CT perfusion enables similar prediction of 2-year MACE, late MACE, and event-free survival similar to that enabled by ICA and single photon emission CT. © RSNA, 2017 Online supplemental material is available for this article.

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Year:  2017        PMID: 28290782      PMCID: PMC5495129          DOI: 10.1148/radiol.2017161565

Source DB:  PubMed          Journal:  Radiology        ISSN: 0033-8419            Impact factor:   11.105


  25 in total

1.  Diagnostic performance of combined noninvasive coronary angiography and myocardial perfusion imaging using 320 row detector computed tomography: design and implementation of the CORE320 multicenter, multinational diagnostic study.

Authors:  Andrea L Vavere; Gregory G Simon; Richard T George; Carlos E Rochitte; Andrew E Arai; Julie M Miller; Marcello Di Carli; Armin Arbab-Zadeh; Armin A Zadeh; Marc Dewey; Hiroyuki Niinuma; Roger Laham; Frank J Rybicki; Joanne D Schuijf; Narinder Paul; John Hoe; Sachio Kuribyashi; Hajime Sakuma; Cesar Nomura; Tan Swee Yaw; Klaus F Kofoed; Kunihiro Yoshioka; Melvin E Clouse; Jeffrey Brinker; Christopher Cox; Joao A C Lima
Journal:  J Cardiovasc Comput Tomogr       Date:  2011-11-12

2.  Diagnostic performance of combined noninvasive coronary angiography and myocardial perfusion imaging using 320-MDCT: the CT angiography and perfusion methods of the CORE320 multicenter multinational diagnostic study.

Authors:  Richard T George; Armin Arbab-Zadeh; Rodrigo J Cerci; Andrea L Vavere; Kakuya Kitagawa; Marc Dewey; Carlos E Rochitte; Andrew E Arai; Narinder Paul; Frank J Rybicki; Albert C Lardo; Melvin E Clouse; Joao A C Lima
Journal:  AJR Am J Roentgenol       Date:  2011-10       Impact factor: 3.959

3.  Moving beyond the hazard ratio in quantifying the between-group difference in survival analysis.

Authors:  Hajime Uno; Brian Claggett; Lu Tian; Eisuke Inoue; Paul Gallo; Toshio Miyata; Deborah Schrag; Masahiro Takeuchi; Yoshiaki Uyama; Lihui Zhao; Hicham Skali; Scott Solomon; Susanna Jacobus; Michael Hughes; Milton Packer; Lee-Jen Wei
Journal:  J Clin Oncol       Date:  2014-06-30       Impact factor: 44.544

4.  Computed tomography angiography and perfusion to assess coronary artery stenosis causing perfusion defects by single photon emission computed tomography: the CORE320 study.

Authors:  Carlos E Rochitte; Richard T George; Marcus Y Chen; Armin Arbab-Zadeh; Marc Dewey; Julie M Miller; Hiroyuki Niinuma; Kunihiro Yoshioka; Kakuya Kitagawa; Shiro Nakamori; Roger Laham; Andrea L Vavere; Rodrigo J Cerci; Vishal C Mehra; Cesar Nomura; Klaus F Kofoed; Masahiro Jinzaki; Sachio Kuribayashi; Albert de Roos; Michael Laule; Swee Yaw Tan; John Hoe; Narinder Paul; Frank J Rybicki; Jeffery A Brinker; Andrew E Arai; Christopher Cox; Melvin E Clouse; Marcelo F Di Carli; Joao A C Lima
Journal:  Eur Heart J       Date:  2013-11-19       Impact factor: 29.983

5.  Incremental prognostic value of myocardial perfusion single photon emission computed tomography for the prediction of cardiac death: differential stratification for risk of cardiac death and myocardial infarction.

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Journal:  Circulation       Date:  1998-02-17       Impact factor: 29.690

6.  Coronary artery calcium area by electron-beam computed tomography and coronary atherosclerotic plaque area. A histopathologic correlative study.

Authors:  J A Rumberger; D B Simons; L A Fitzpatrick; P F Sheedy; R S Schwartz
Journal:  Circulation       Date:  1995-10-15       Impact factor: 29.690

7.  Diagnostic accuracy of fractional flow reserve from anatomic CT angiography.

Authors:  James K Min; Jonathon Leipsic; Michael J Pencina; Daniel S Berman; Bon-Kwon Koo; Carlos van Mieghem; Andrejs Erglis; Fay Y Lin; Allison M Dunning; Patricia Apruzzese; Matthew J Budoff; Jason H Cole; Farouc A Jaffer; Martin B Leon; Jennifer Malpeso; G B John Mancini; Seung-Jung Park; Robert S Schwartz; Leslee J Shaw; Laura Mauri
Journal:  JAMA       Date:  2012-09-26       Impact factor: 56.272

8.  Effect of coronary artery bypass graft surgery on survival: overview of 10-year results from randomised trials by the Coronary Artery Bypass Graft Surgery Trialists Collaboration.

Authors:  S Yusuf; D Zucker; P Peduzzi; L D Fisher; T Takaro; J W Kennedy; K Davis; T Killip; E Passamani; R Norris
Journal:  Lancet       Date:  1994-08-27       Impact factor: 79.321

9.  Prognostic value of multidetector coronary computed tomographic angiography for prediction of all-cause mortality.

Authors:  James K Min; Leslee J Shaw; Richard B Devereux; Peter M Okin; Jonathan W Weinsaft; Donald J Russo; Nicholas J Lippolis; Daniel S Berman; Tracy Q Callister
Journal:  J Am Coll Cardiol       Date:  2007-09-04       Impact factor: 24.094

10.  Prediction of clinical outcome by myocardial CT perfusion in patients with low-risk unstable angina pectoris.

Authors:  Jesper J Linde; Mathias Sørgaard; Jørgen T Kühl; Jens D Hove; Henning Kelbæk; Walter B Nielsen; Klaus F Kofoed
Journal:  Int J Cardiovasc Imaging       Date:  2016-10-07       Impact factor: 2.357

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  20 in total

Review 1.  Myocardial computed tomography perfusion.

Authors:  Kelley R Branch; Ryan D Haley; Marcio Sommer Bittencourt; Amit R Patel; Edward Hulten; Ron Blankstein
Journal:  Cardiovasc Diagn Ther       Date:  2017-10

Review 2.  Evolving, innovating, and revolutionary changes in cardiovascular imaging: We've only just begun!

Authors:  Leslee J Shaw; Rory Hachamovitch; James K Min; Marcelo Di Carli; Jennifer H Mieres; Lawrence Phillips; Ron Blankstein; Andrew Einstein; Viviany R Taqueti; Robert Hendel; Daniel S Berman
Journal:  J Nucl Cardiol       Date:  2018-02-21       Impact factor: 5.952

3.  Multimodal Multiparametric Three-dimensional Image Fusion in Coronary Artery Disease: Combining the Best of Two Worlds.

Authors:  Jochen von Spiczak; Manoj Mannil; Hanna Model; Chris Schwemmer; Sebastian Kozerke; Frank Ruschitzka; Hatem Alkadhi; Robert Manka
Journal:  Radiol Cardiothorac Imaging       Date:  2020-04-16

Review 4.  [Beyond Coronary CT Angiography: CT Fractional Flow Reserve and Perfusion].

Authors:  Moon Young Kim; Dong Hyun Yang; Ki Seok Choo; Whal Lee
Journal:  Taehan Yongsang Uihakhoe Chi       Date:  2022-01-21

5.  Myocardial perfusion assessment in the infarct core and penumbra zones in an in-vivo porcine model of the acute, sub-acute, and chronic infarction.

Authors:  Meng-Xi Yang; Hua-Yan Xu; Lu Zhang; Lin Chen; Rong Xu; Hang Fu; Hui Liu; Xue-Sheng Li; Chuan Fu; Ke-Ling Liu; Hong Li; Xiao-Yue Zhou; Ying-Kun Guo; Zhi-Gang Yang
Journal:  Eur Radiol       Date:  2020-11-06       Impact factor: 5.315

Review 6.  Functional Information in Coronary Artery Disease: The Case of Computed Tomography Myocardial Perfusion.

Authors:  Klaus F Kofoed; Mathias H Sørgaard; Jesper J Linde
Journal:  Curr Cardiol Rep       Date:  2017-10-25       Impact factor: 2.931

7.  Prognostic value of noninvasive combined anatomic/functional assessment by cardiac CT in patients with suspected coronary artery disease - Comparison with invasive coronary angiography and nuclear myocardial perfusion imaging for the five-year-follow up of the CORE320 multicenter study.

Authors:  Marc Dewey; Carlos E Rochitte; Mohammad R Ostovaneh; Marcus Y Chen; Richard T George; Hiroyuki Niinuma; Kakuya Kitagawa; Roger Laham; Klaus Kofoed; Cesar Nomura; Hajime Sakuma; Kunihiro Yoshioka; Vishal C Mehra; Masahiro Jinzaki; Sachio Kuribayashi; Michael Laule; Narinder Paul; Arthur J Scholte; Rodrigo Cerci; John Hoe; Swee Yaw Tan; Frank J Rybicki; Matthew B Matheson; Andrea L Vavere; Andrew E Arai; Julie M Miller; Christopher Cox; Jeffrey Brinker; Melvin E Clouse; Marcelo Di Carli; João A C Lima; Armin Arbab-Zadeh
Journal:  J Cardiovasc Comput Tomogr       Date:  2021-05-12

8.  Combining perfusion and angiography with a low-dose cardiac CT technique: a preliminary investigation in a swine model.

Authors:  Logan Hubbard; Shant Malkasian; Yixiao Zhao; Pablo Abbona; Sabee Molloi
Journal:  Int J Cardiovasc Imaging       Date:  2021-01-27       Impact factor: 2.357

Review 9.  Dynamic contrast-enhanced (DCE) imaging: state of the art and applications in whole-body imaging.

Authors:  Domenico Albano; Federico Bruno; Andrea Agostini; Salvatore Alessio Angileri; Massimo Benenati; Giulia Bicchierai; Michaela Cellina; Vito Chianca; Diletta Cozzi; Ginevra Danti; Federica De Muzio; Letizia Di Meglio; Francesco Gentili; Giuliana Giacobbe; Giulia Grazzini; Irene Grazzini; Pasquale Guerriero; Carmelo Messina; Giuseppe Micci; Pierpaolo Palumbo; Maria Paola Rocco; Roberto Grassi; Vittorio Miele; Antonio Barile
Journal:  Jpn J Radiol       Date:  2021-12-24       Impact factor: 2.374

10.  Low-Radiation-Dose Stress Myocardial Perfusion Measurement Using First-Pass Analysis Dynamic Computed Tomography: A Preliminary Investigation in a Swine Model.

Authors:  Logan Hubbard; Shant Malkasian; Yixiao Zhao; Pablo Abbona; Jungnam Kwon; Sabee Molloi
Journal:  Invest Radiol       Date:  2019-12       Impact factor: 6.016

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