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Obstructive Coronary Artery Disease Improved Prediction by the COME-CCT Pretest Probability Calculator With Cardiac CT

Wieske, Viktoria; Walther, Mario; Mohamed, Mahmoud; Weickert, Benjamin; Andrzejewski, Simon; Dubourg, Benjamin; Andreini, Daniele; Pontone, Gianluca; Alkadhi, Hatem; Hausleiter, Jörg; Garcia, Mario J.; Leschka, Sebastian; Meijboom, Willem B.; Zimmermann, Elke; Gerber, Bernhard; Schoepf, U Joseph; Shabestari, Abbas A.; Nørgaard, Bjarne L.; Meijs, Matthijs FL.; Sato, Akira; Øvrehus, Kristian A.; Diederichsen, Axel CP.; Jenkins, Shona M.; Knuuti, Juhani; Hamdan, Ashraf; Halvorsen, Bjørn A.; Mendoza Rodriguez, Vladimir; Rochitte, Carlos; Rixe, Johannes; Wan, Yung-Liang; Langer, Christoph; Bettencourt, Nuno; Martuscelli, Eugenio; Ghostine, Said; Buechel, Ronny R.; Nikolaou, Konstantin; Mickley, Hans; Yang, Lin; Zhang, Zhaqoi; Chen, Marcus Y.; Halon, David A.; Rief, Matthias; Sun, Kai; Niinuma, Hiroyuki; Marcus, Roy P.; Muraglia, Simone; Jakamy, Réda; Chow, Benjamin JW.; Kaufmann, Philipp A.; Herzog, Bernhard A.; Tardif, Jean-Claude; Nomura, Cesar; Kofoed, Klaus F.; Laissy, Jean-Pierre; Arbab-Zadeh, Armin; Kitagawa, Kakuya; Laham, Roger; Jinzaki, Masahiro; Hoe, John; Rybicki, Frank J.; Scholte, Arthur; Paul, Narinder; Tan, Swee Yaw; Yoshioka, Kunihiro; Roehle, Robert; Schuetz, Georg M.; Laule, Michael; Newby, David E.; Achenbach, Stephan; Budoff, Matthew; Haase, Robert; Dodd, Jonathan D.; Dewey, Marc; Schlattmann, Peter; COME-CCT Consortium

Obstructive Coronary Artery Disease Improved Prediction by the COME-CCT Pretest Probability Calculator With Cardiac CT

Wieske, Viktoria
Walther, Mario
Mohamed, Mahmoud
Weickert, Benjamin
Andrzejewski, Simon
Dubourg, Benjamin
Andreini, Daniele
Pontone, Gianluca
Alkadhi, Hatem
Hausleiter, Jörg
Garcia, Mario J.
Leschka, Sebastian
Meijboom, Willem B.
Zimmermann, Elke
Gerber, Bernhard
Schoepf, U Joseph
Shabestari, Abbas A.
Nørgaard, Bjarne L.
Meijs, Matthijs FL.
Sato, Akira
Øvrehus, Kristian A.
Diederichsen, Axel CP.
Jenkins, Shona M.
Knuuti, Juhani
Hamdan, Ashraf
Halvorsen, Bjørn A.
Mendoza Rodriguez, Vladimir
Rochitte, Carlos
Rixe, Johannes
Wan, Yung-Liang
Langer, Christoph
Bettencourt, Nuno
Martuscelli, Eugenio
Ghostine, Said
Buechel, Ronny R.
Nikolaou, Konstantin
Mickley, Hans
Yang, Lin
Zhang, Zhaqoi
Chen, Marcus Y.
Halon, David A.
Rief, Matthias
Sun, Kai
Niinuma, Hiroyuki
Marcus, Roy P.
Muraglia, Simone
Jakamy, Réda
Chow, Benjamin JW.
Kaufmann, Philipp A.
Herzog, Bernhard A.
Tardif, Jean-Claude
Nomura, Cesar
Kofoed, Klaus F.
Laissy, Jean-Pierre
Arbab-Zadeh, Armin
Kitagawa, Kakuya
Laham, Roger
Jinzaki, Masahiro
Hoe, John
Rybicki, Frank J.
Scholte, Arthur
Paul, Narinder
Tan, Swee Yaw
Yoshioka, Kunihiro
Roehle, Robert
Schuetz, Georg M.
Laule, Michael
Newby, David E.
Achenbach, Stephan
Budoff, Matthew
Haase, Robert
Dodd, Jonathan D.
Dewey, Marc
Schlattmann, Peter
COME-CCT Consortium
Katso/Avaa
1-s2.0-S2772963X25004387-main.pdf (2.882Mb)
Lataukset: 

Elsevier BV
doi:10.1016/j.jacadv.2025.102014
URI
https://doi.org/10.1016/j.jacadv.2025.102014
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe202601215885
Tiivistelmä

Background

Combining pretest probability (PTP) with computed tomography angiography (CTA) for diagnosing obstructive coronary artery disease (CAD) has not yet been determined.

Objectives

The purpose of this study was to evaluate the accuracy of PTP calculation alone and with CTA for diagnosing CAD.

Methods

A total of 65 prospective diagnostic accuracy studies of patients clinically referred to invasive coronary angiography with stable chest pain were included in this international collaborative individual patient data Collaborative Meta-Analysis of Cardiac CT (COME-CCT) meta-analysis. Mixed-effects logistic regression with a data set–specific random intercept for clustering was applied to 4 models: the traditional Diamond-Forrester models, a PTP model based on the COME-CCT data (termed COME-CCT-PTP calculator), a CTA alone model, and a combined COME-CCT-PTP with CTA model.

Results

Individual patient data from 5,332 patients with clinically indicated invasive coronary angiography from 22 countries were included. The COME-CCT-PTP calculator was more accurate than the original Diamond-Forrester model (AUC: 0.68; 95% CI: 0.66-0.69 vs 0.63; 95% CI: 0.62-0.65). The COME-CCT-PTP with CTA model significantly improved accuracy compared with either model alone (AUC: 0.86; 95% CI: 0.85-0.87 vs 0.81; 95% CI: 0.80-0.82). The improved prediction was consistent in decision curve analysis with an increased net benefit for all chest pain subtypes and was almost equally seen in patients with typical or atypical angina (0.85; 95% CI: 0.84-0.86) and nonanginal or other chest discomfort (0.88; 95% CI: 0.86-0.89).

Conclusions

Combining the COME-CCT-PTP calculator with CTA provides more accurate prediction than the PTP or CTA alone for the diagnosis of obstructive CAD, for all chest pain subtypes.

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