Coronary Artery Disease Clinical Trial
— MachineOfficial title:
Machine leArning Based CT angiograpHy derIved FFR a Multi-ceNtEr, Registry
Demonstrate in a large multicenter population the diagnostic performance of a pre-commercial on-site, local, CT angiography derived FFR algorithm in comparison to invasive FFR.
Status | Completed |
Enrollment | 352 |
Est. completion date | January 2017 |
Est. primary completion date | January 2017 |
Accepts healthy volunteers | No |
Gender | Both |
Age group | 18 Years and older |
Eligibility |
Inclusion Criteria: - Know or suspect coronary artery disease followed within 6 months by an invasive FFR measurement. Exclusion Criteria: - Cardiac event between coronary CT angiography and the invasive FFR procedure, noninterpretable coronary CT angiography image quality, or incomplete coronary CT angiography coverage. |
Observational Model: Cohort, Time Perspective: Retrospective
Country | Name | City | State |
---|---|---|---|
Netherlands | ErasmusMC | Rotterdam | Zuid Holland |
Lead Sponsor | Collaborator |
---|---|
Erasmus Medical Center | Asan Medical Center, Institute of Cardiology, Warsaw, Poland, Medical University of South Carolina, Siemens Healthcare Diagnostics Inc, University Hospital, Linkoeping |
Netherlands,
Baumann S, Wang R, Schoepf UJ, Steinberg DH, Spearman JV, Bayer RR 2nd, Hamm CW, Renker M. Coronary CT angiography-derived fractional flow reserve correlated with invasive fractional flow reserve measurements--initial experience with a novel physician-driven algorithm. Eur Radiol. 2015 Apr;25(4):1201-7. doi: 10.1007/s00330-014-3482-5. — View Citation
Coenen A, Lubbers MM, Kurata A, Kono A, Dedic A, Chelu RG, Dijkshoorn ML, Gijsen FJ, Ouhlous M, van Geuns RJ, Nieman K. Fractional flow reserve computed from noninvasive CT angiography data: diagnostic performance of an on-site clinician-operated computational fluid dynamics algorithm. Radiology. 2015 Mar;274(3):674-83. doi: 10.1148/radiol.14140992. — View Citation
De Geer J, Sandstedt M, Björkholm A, Alfredsson J, Janzon M, Engvall J, Persson A. Software-based on-site estimation of fractional flow reserve using standard coronary CT angiography data. Acta Radiol. 2016 Oct;57(10):1186-92. doi: 10.1177/0284185115622075. — View Citation
Kruk M, Wardziak L, Demkow M, Pleban W, Pregowski J, Dzielinska Z, Witulski M, Witkowski A, Ruzyllo W, Kepka C. Workstation-Based Calculation of CTA-Based FFR for Intermediate Stenosis. JACC Cardiovasc Imaging. 2016 Jun;9(6):690-9. doi: 10.1016/j.jcmg.2015.09.019. — View Citation
Yang DH, Kim YH, Roh JH, Kang JW, Ahn JM, Kweon J, Lee JB, Choi SH, Shin ES, Park DW, Kang SJ, Lee SW, Lee CW, Park SW, Park SJ, Lim TH. Diagnostic performance of on-site CT-derived fractional flow reserve versus CT perfusion. Eur Heart J Cardiovasc Imaging. 2016 Jun 28. pii: jew094. [Epub ahead of print] — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Diagnostic accuracy of local reduced order CFD and machine learning based CT angiography derived FFR, both validated against invasive FFR. Measured at both vessel and patient level. | 6 months | No | |
Secondary | Influence of calcium on diagnostic accuracy of CT angiography derived FFR. | 6 months | No | |
Secondary | Confidence intervals of CT angiography derived FFR | 6 months | No | |
Secondary | Direct vessel based comparison between CT angiography derived FFR and QCT stenosis measurements | 6 months | No | |
Secondary | Analysis of anatomically mild stenosis (<50% lumen diameter reduction) but functionally significant (invasive FFR = 0.80) | 6 months | No | |
Secondary | Long term clinical outcome of CT angiography derived FFR | 12 months | No |
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