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nxt - analysis coronary blood flow coronary ct angiography  (HeartFlow Inc)

 
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    Structured Review

    HeartFlow Inc nxt - analysis coronary blood flow coronary ct angiography
    Framework for physics-based models to simulate cardiovascular flows. Top panel (a–d) depicts different medical imaging modalities commonly used in cardiovascular flow models. (a) Computed tomography <t>angiography.</t> (b) Coronary angiography. (c) Magnetic resonance imaging. (d) Intravascular ultrasound. Middle panel [(e)–(g)] depicts three-dimensional (3D) computational fluid dynamic model. (e) Initial conditions applied to a patient-derived 3D left coronary artery geometry. (f) 3D output data: pressure field. (g) 3D output data: wall shear stress (WSS). [(h) and (i)] depicts reduced-order flow model. (h) 3D coronary model reduced to one-dimensional coronary tree model with trifurcation and terminal branches modeled using a structured tree with feedback pressure. (i) Output data: pressure and flow rate for different coronary vessels. Panels (b) and (c) reproduced from H. Baccouche, T. Beck, M. Maunz, P. Fogarassy, and M. Beyer, Journal of Cardiovascular Magnetic Resonance 11(1), 1–4 (2009).237 Copyright 2009 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panel (d) reproduced from Y. Rim, D. D. McPherson, and H. Kim, Biomedical Engineering Online 12(1), 115 (2013).29 Copyright 2013 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panels (h) and (i) reproduced from Z. Duanmu, W. Chen, H. Gao, X. Yang, X. Luo, and N. A. Hill, Frontiers in Physiology 10, 853 (2019).30 Copyright 2019 Authors, licensed under a Creative Commons Attribution (CC BY) license.
    Nxt Analysis Coronary Blood Flow Coronary Ct Angiography, supplied by HeartFlow Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/analysis+coronary+blood+flow+coronary+ct+angiography/analysis+coronary+blood+flow+coronary+ct+angiography/pmc10903374-43-13-6
    Average 90 stars, based on 1 article reviews
    nxt - analysis coronary blood flow coronary ct angiography - by Bioz Stars, 2026-09
    90/100 stars

    Images

    1) Product Images from "Application of physics-based flow models in cardiovascular medicine: Current practices and challenges"

    Article Title: Application of physics-based flow models in cardiovascular medicine: Current practices and challenges

    Journal: Biophysics Reviews

    doi: 10.1063/5.0040315

    Framework for physics-based models to simulate cardiovascular flows. Top panel (a–d) depicts different medical imaging modalities commonly used in cardiovascular flow models. (a) Computed tomography angiography. (b) Coronary angiography. (c) Magnetic resonance imaging. (d) Intravascular ultrasound. Middle panel [(e)–(g)] depicts three-dimensional (3D) computational fluid dynamic model. (e) Initial conditions applied to a patient-derived 3D left coronary artery geometry. (f) 3D output data: pressure field. (g) 3D output data: wall shear stress (WSS). [(h) and (i)] depicts reduced-order flow model. (h) 3D coronary model reduced to one-dimensional coronary tree model with trifurcation and terminal branches modeled using a structured tree with feedback pressure. (i) Output data: pressure and flow rate for different coronary vessels. Panels (b) and (c) reproduced from H. Baccouche, T. Beck, M. Maunz, P. Fogarassy, and M. Beyer, Journal of Cardiovascular Magnetic Resonance 11(1), 1–4 (2009).237 Copyright 2009 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panel (d) reproduced from Y. Rim, D. D. McPherson, and H. Kim, Biomedical Engineering Online 12(1), 115 (2013).29 Copyright 2013 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panels (h) and (i) reproduced from Z. Duanmu, W. Chen, H. Gao, X. Yang, X. Luo, and N. A. Hill, Frontiers in Physiology 10, 853 (2019).30 Copyright 2019 Authors, licensed under a Creative Commons Attribution (CC BY) license.
    Figure Legend Snippet: Framework for physics-based models to simulate cardiovascular flows. Top panel (a–d) depicts different medical imaging modalities commonly used in cardiovascular flow models. (a) Computed tomography angiography. (b) Coronary angiography. (c) Magnetic resonance imaging. (d) Intravascular ultrasound. Middle panel [(e)–(g)] depicts three-dimensional (3D) computational fluid dynamic model. (e) Initial conditions applied to a patient-derived 3D left coronary artery geometry. (f) 3D output data: pressure field. (g) 3D output data: wall shear stress (WSS). [(h) and (i)] depicts reduced-order flow model. (h) 3D coronary model reduced to one-dimensional coronary tree model with trifurcation and terminal branches modeled using a structured tree with feedback pressure. (i) Output data: pressure and flow rate for different coronary vessels. Panels (b) and (c) reproduced from H. Baccouche, T. Beck, M. Maunz, P. Fogarassy, and M. Beyer, Journal of Cardiovascular Magnetic Resonance 11(1), 1–4 (2009).237 Copyright 2009 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panel (d) reproduced from Y. Rim, D. D. McPherson, and H. Kim, Biomedical Engineering Online 12(1), 115 (2013).29 Copyright 2013 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panels (h) and (i) reproduced from Z. Duanmu, W. Chen, H. Gao, X. Yang, X. Luo, and N. A. Hill, Frontiers in Physiology 10, 853 (2019).30 Copyright 2019 Authors, licensed under a Creative Commons Attribution (CC BY) license.

    Techniques Used: Imaging, Computed Tomography, Magnetic Resonance Imaging, Derivative Assay, Shear

    Clinical trials based on cardiovascular flow models in aortic diseases, congenital heart diseases, and coronary artery diseases. (Abbreviations and sources listed below. a )
    Figure Legend Snippet: Clinical trials based on cardiovascular flow models in aortic diseases, congenital heart diseases, and coronary artery diseases. (Abbreviations and sources listed below. a )

    Techniques Used: Computed Tomography, Imaging, Software, Diagnostic Assay, Magnetic Resonance Imaging, Single Photon Emission Computed Tomography, Derivative Assay, Comparison, Tomography, Dissection, Sampling, Functional Assay

    Physics-based flow model in cardiovascular diseases. (Abbreviations listed below. a )
    Figure Legend Snippet: Physics-based flow model in cardiovascular diseases. (Abbreviations listed below. a )

    Techniques Used: Imaging, In Vivo, Diagnostic Assay, Functional Assay, Derivative Assay

    Related Articles

    Computed Tomography:

    Article Title: Atherosclerosis, Stenosis, and Ischemia: One Primary, One Secondary, and One Tertiary.
    Article Snippet: In this issue of iJACC, Ahmadi et al. (9) present the results of a sub-analysis of the NXT (HeartFlow Analysis of Coronary Blood Flow Using Coronary CT Angiography) study, a prospective multicenter evaluation of 254 patients undergoing coronary CTA, ICA, and FFR to carefully examine the relationship of atherosclerosis, stenosis, and ischemia.

    Article Title: Lesion-Specific and Vessel-Related Determinants of Fractional Flow Reserve Beyond Coronary Artery Stenosis.
    Article Snippet: This is a subanalysis of NXT (HeartFlowNXT: HeartFlow Analysis of Coronary Blood Flow Using Coronary CT Angiography; NCT01757678) comprising patients suspected of stable coronary artery disease (CAD) (14).



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    HeartFlow Inc nxt - analysis coronary blood flow coronary ct angiography
    Framework for physics-based models to simulate cardiovascular flows. Top panel (a–d) depicts different medical imaging modalities commonly used in cardiovascular flow models. (a) Computed tomography <t>angiography.</t> (b) Coronary angiography. (c) Magnetic resonance imaging. (d) Intravascular ultrasound. Middle panel [(e)–(g)] depicts three-dimensional (3D) computational fluid dynamic model. (e) Initial conditions applied to a patient-derived 3D left coronary artery geometry. (f) 3D output data: pressure field. (g) 3D output data: wall shear stress (WSS). [(h) and (i)] depicts reduced-order flow model. (h) 3D coronary model reduced to one-dimensional coronary tree model with trifurcation and terminal branches modeled using a structured tree with feedback pressure. (i) Output data: pressure and flow rate for different coronary vessels. Panels (b) and (c) reproduced from H. Baccouche, T. Beck, M. Maunz, P. Fogarassy, and M. Beyer, Journal of Cardiovascular Magnetic Resonance 11(1), 1–4 (2009).237 Copyright 2009 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panel (d) reproduced from Y. Rim, D. D. McPherson, and H. Kim, Biomedical Engineering Online 12(1), 115 (2013).29 Copyright 2013 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panels (h) and (i) reproduced from Z. Duanmu, W. Chen, H. Gao, X. Yang, X. Luo, and N. A. Hill, Frontiers in Physiology 10, 853 (2019).30 Copyright 2019 Authors, licensed under a Creative Commons Attribution (CC BY) license.
    Nxt Analysis Coronary Blood Flow Coronary Ct Angiography, supplied by HeartFlow Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/analysis+coronary+blood+flow+coronary+ct+angiography/analysis+coronary+blood+flow+coronary+ct+angiography/pmc10903374-43-13-6
    Average 90 stars, based on 1 article reviews
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    HeartFlow Inc analysis coronary blood flow coronary ct angiography
    Framework for physics-based models to simulate cardiovascular flows. Top panel (a–d) depicts different medical imaging modalities commonly used in cardiovascular flow models. (a) Computed tomography <t>angiography.</t> (b) Coronary angiography. (c) Magnetic resonance imaging. (d) Intravascular ultrasound. Middle panel [(e)–(g)] depicts three-dimensional (3D) computational fluid dynamic model. (e) Initial conditions applied to a patient-derived 3D left coronary artery geometry. (f) 3D output data: pressure field. (g) 3D output data: wall shear stress (WSS). [(h) and (i)] depicts reduced-order flow model. (h) 3D coronary model reduced to one-dimensional coronary tree model with trifurcation and terminal branches modeled using a structured tree with feedback pressure. (i) Output data: pressure and flow rate for different coronary vessels. Panels (b) and (c) reproduced from H. Baccouche, T. Beck, M. Maunz, P. Fogarassy, and M. Beyer, Journal of Cardiovascular Magnetic Resonance 11(1), 1–4 (2009).237 Copyright 2009 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panel (d) reproduced from Y. Rim, D. D. McPherson, and H. Kim, Biomedical Engineering Online 12(1), 115 (2013).29 Copyright 2013 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panels (h) and (i) reproduced from Z. Duanmu, W. Chen, H. Gao, X. Yang, X. Luo, and N. A. Hill, Frontiers in Physiology 10, 853 (2019).30 Copyright 2019 Authors, licensed under a Creative Commons Attribution (CC BY) license.
    Analysis Coronary Blood Flow Coronary Ct Angiography, supplied by HeartFlow Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/analysis+coronary+blood+flow+coronary+ct+angiography/analysis+coronary+blood+flow+coronary+ct+angiography/pm29311033-55-5-7
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    HeartFlow Inc analysis of coronary blood flow using ct angiography: next steps
    Framework for physics-based models to simulate cardiovascular flows. Top panel (a–d) depicts different medical imaging modalities commonly used in cardiovascular flow models. (a) Computed tomography <t>angiography.</t> (b) Coronary angiography. (c) Magnetic resonance imaging. (d) Intravascular ultrasound. Middle panel [(e)–(g)] depicts three-dimensional (3D) computational fluid dynamic model. (e) Initial conditions applied to a patient-derived 3D left coronary artery geometry. (f) 3D output data: pressure field. (g) 3D output data: wall shear stress (WSS). [(h) and (i)] depicts reduced-order flow model. (h) 3D coronary model reduced to one-dimensional coronary tree model with trifurcation and terminal branches modeled using a structured tree with feedback pressure. (i) Output data: pressure and flow rate for different coronary vessels. Panels (b) and (c) reproduced from H. Baccouche, T. Beck, M. Maunz, P. Fogarassy, and M. Beyer, Journal of Cardiovascular Magnetic Resonance 11(1), 1–4 (2009).237 Copyright 2009 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panel (d) reproduced from Y. Rim, D. D. McPherson, and H. Kim, Biomedical Engineering Online 12(1), 115 (2013).29 Copyright 2013 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panels (h) and (i) reproduced from Z. Duanmu, W. Chen, H. Gao, X. Yang, X. Luo, and N. A. Hill, Frontiers in Physiology 10, 853 (2019).30 Copyright 2019 Authors, licensed under a Creative Commons Attribution (CC BY) license.
    Analysis Of Coronary Blood Flow Using Ct Angiography: Next Steps, supplied by HeartFlow Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/analysis+coronary+blood+flow+coronary+ct+angiography/analysis+coronary+blood+flow+coronary+ct+angiography/pm29311033-242-5-6
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    HeartFlow Inc analysis of coronary blood flow using ct angiography
    Framework for physics-based models to simulate cardiovascular flows. Top panel (a–d) depicts different medical imaging modalities commonly used in cardiovascular flow models. (a) Computed tomography <t>angiography.</t> (b) Coronary angiography. (c) Magnetic resonance imaging. (d) Intravascular ultrasound. Middle panel [(e)–(g)] depicts three-dimensional (3D) computational fluid dynamic model. (e) Initial conditions applied to a patient-derived 3D left coronary artery geometry. (f) 3D output data: pressure field. (g) 3D output data: wall shear stress (WSS). [(h) and (i)] depicts reduced-order flow model. (h) 3D coronary model reduced to one-dimensional coronary tree model with trifurcation and terminal branches modeled using a structured tree with feedback pressure. (i) Output data: pressure and flow rate for different coronary vessels. Panels (b) and (c) reproduced from H. Baccouche, T. Beck, M. Maunz, P. Fogarassy, and M. Beyer, Journal of Cardiovascular Magnetic Resonance 11(1), 1–4 (2009).237 Copyright 2009 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panel (d) reproduced from Y. Rim, D. D. McPherson, and H. Kim, Biomedical Engineering Online 12(1), 115 (2013).29 Copyright 2013 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panels (h) and (i) reproduced from Z. Duanmu, W. Chen, H. Gao, X. Yang, X. Luo, and N. A. Hill, Frontiers in Physiology 10, 853 (2019).30 Copyright 2019 Authors, licensed under a Creative Commons Attribution (CC BY) license.
    Analysis Of Coronary Blood Flow Using Ct Angiography, supplied by HeartFlow Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/analysis+coronary+blood+flow+coronary+ct+angiography/analysis+coronary+blood+flow+coronary+ct+angiography/pm28789941-161-8-18
    Average 90 stars, based on 1 article reviews
    analysis of coronary blood flow using ct angiography - by Bioz Stars, 2026-09
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    HeartFlow Inc coronary blood flow analysis using ct angiography
    Framework for physics-based models to simulate cardiovascular flows. Top panel (a–d) depicts different medical imaging modalities commonly used in cardiovascular flow models. (a) Computed tomography <t>angiography.</t> (b) Coronary angiography. (c) Magnetic resonance imaging. (d) Intravascular ultrasound. Middle panel [(e)–(g)] depicts three-dimensional (3D) computational fluid dynamic model. (e) Initial conditions applied to a patient-derived 3D left coronary artery geometry. (f) 3D output data: pressure field. (g) 3D output data: wall shear stress (WSS). [(h) and (i)] depicts reduced-order flow model. (h) 3D coronary model reduced to one-dimensional coronary tree model with trifurcation and terminal branches modeled using a structured tree with feedback pressure. (i) Output data: pressure and flow rate for different coronary vessels. Panels (b) and (c) reproduced from H. Baccouche, T. Beck, M. Maunz, P. Fogarassy, and M. Beyer, Journal of Cardiovascular Magnetic Resonance 11(1), 1–4 (2009).237 Copyright 2009 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panel (d) reproduced from Y. Rim, D. D. McPherson, and H. Kim, Biomedical Engineering Online 12(1), 115 (2013).29 Copyright 2013 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panels (h) and (i) reproduced from Z. Duanmu, W. Chen, H. Gao, X. Yang, X. Luo, and N. A. Hill, Frontiers in Physiology 10, 853 (2019).30 Copyright 2019 Authors, licensed under a Creative Commons Attribution (CC BY) license.
    Coronary Blood Flow Analysis Using Ct Angiography, supplied by HeartFlow Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/analysis+coronary+blood+flow+coronary+ct+angiography/analysis+coronary+blood+flow+coronary+ct+angiography/pmc04830909-54-12-12
    Average 90 stars, based on 1 article reviews
    coronary blood flow analysis using ct angiography - by Bioz Stars, 2026-09
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      Buy from Supplier

    Image Search Results


    Framework for physics-based models to simulate cardiovascular flows. Top panel (a–d) depicts different medical imaging modalities commonly used in cardiovascular flow models. (a) Computed tomography angiography. (b) Coronary angiography. (c) Magnetic resonance imaging. (d) Intravascular ultrasound. Middle panel [(e)–(g)] depicts three-dimensional (3D) computational fluid dynamic model. (e) Initial conditions applied to a patient-derived 3D left coronary artery geometry. (f) 3D output data: pressure field. (g) 3D output data: wall shear stress (WSS). [(h) and (i)] depicts reduced-order flow model. (h) 3D coronary model reduced to one-dimensional coronary tree model with trifurcation and terminal branches modeled using a structured tree with feedback pressure. (i) Output data: pressure and flow rate for different coronary vessels. Panels (b) and (c) reproduced from H. Baccouche, T. Beck, M. Maunz, P. Fogarassy, and M. Beyer, Journal of Cardiovascular Magnetic Resonance 11(1), 1–4 (2009).237 Copyright 2009 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panel (d) reproduced from Y. Rim, D. D. McPherson, and H. Kim, Biomedical Engineering Online 12(1), 115 (2013).29 Copyright 2013 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panels (h) and (i) reproduced from Z. Duanmu, W. Chen, H. Gao, X. Yang, X. Luo, and N. A. Hill, Frontiers in Physiology 10, 853 (2019).30 Copyright 2019 Authors, licensed under a Creative Commons Attribution (CC BY) license.

    Journal: Biophysics Reviews

    Article Title: Application of physics-based flow models in cardiovascular medicine: Current practices and challenges

    doi: 10.1063/5.0040315

    Figure Lengend Snippet: Framework for physics-based models to simulate cardiovascular flows. Top panel (a–d) depicts different medical imaging modalities commonly used in cardiovascular flow models. (a) Computed tomography angiography. (b) Coronary angiography. (c) Magnetic resonance imaging. (d) Intravascular ultrasound. Middle panel [(e)–(g)] depicts three-dimensional (3D) computational fluid dynamic model. (e) Initial conditions applied to a patient-derived 3D left coronary artery geometry. (f) 3D output data: pressure field. (g) 3D output data: wall shear stress (WSS). [(h) and (i)] depicts reduced-order flow model. (h) 3D coronary model reduced to one-dimensional coronary tree model with trifurcation and terminal branches modeled using a structured tree with feedback pressure. (i) Output data: pressure and flow rate for different coronary vessels. Panels (b) and (c) reproduced from H. Baccouche, T. Beck, M. Maunz, P. Fogarassy, and M. Beyer, Journal of Cardiovascular Magnetic Resonance 11(1), 1–4 (2009).237 Copyright 2009 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panel (d) reproduced from Y. Rim, D. D. McPherson, and H. Kim, Biomedical Engineering Online 12(1), 115 (2013).29 Copyright 2013 Authors, licensed under a Creative Commons Attribution (CC BY) license. Panels (h) and (i) reproduced from Z. Duanmu, W. Chen, H. Gao, X. Yang, X. Luo, and N. A. Hill, Frontiers in Physiology 10, 853 (2019).30 Copyright 2019 Authors, licensed under a Creative Commons Attribution (CC BY) license.

    Article Snippet: Coronary Artery Disease , HeartFlowNXT - HeartFlow Analysis of Coronary Blood Flow Using Coronary CT Angiography , Procedure: ICA (Invasive Coronary Angiography); Procedure: FFR (Fractional Flow Reserve); Procedure: cCTA (coronary computed tomography angiography); Other: FFRct Analysis (Fractional Flow Reserve Computed Tomography).

    Techniques: Imaging, Computed Tomography, Magnetic Resonance Imaging, Derivative Assay, Shear

    Clinical trials based on cardiovascular flow models in aortic diseases, congenital heart diseases, and coronary artery diseases. (Abbreviations and sources listed below. a )

    Journal: Biophysics Reviews

    Article Title: Application of physics-based flow models in cardiovascular medicine: Current practices and challenges

    doi: 10.1063/5.0040315

    Figure Lengend Snippet: Clinical trials based on cardiovascular flow models in aortic diseases, congenital heart diseases, and coronary artery diseases. (Abbreviations and sources listed below. a )

    Article Snippet: Coronary Artery Disease , HeartFlowNXT - HeartFlow Analysis of Coronary Blood Flow Using Coronary CT Angiography , Procedure: ICA (Invasive Coronary Angiography); Procedure: FFR (Fractional Flow Reserve); Procedure: cCTA (coronary computed tomography angiography); Other: FFRct Analysis (Fractional Flow Reserve Computed Tomography).

    Techniques: Computed Tomography, Imaging, Software, Diagnostic Assay, Magnetic Resonance Imaging, Single Photon Emission Computed Tomography, Derivative Assay, Comparison, Tomography, Dissection, Sampling, Functional Assay

    Physics-based flow model in cardiovascular diseases. (Abbreviations listed below. a )

    Journal: Biophysics Reviews

    Article Title: Application of physics-based flow models in cardiovascular medicine: Current practices and challenges

    doi: 10.1063/5.0040315

    Figure Lengend Snippet: Physics-based flow model in cardiovascular diseases. (Abbreviations listed below. a )

    Article Snippet: Coronary Artery Disease , HeartFlowNXT - HeartFlow Analysis of Coronary Blood Flow Using Coronary CT Angiography , Procedure: ICA (Invasive Coronary Angiography); Procedure: FFR (Fractional Flow Reserve); Procedure: cCTA (coronary computed tomography angiography); Other: FFRct Analysis (Fractional Flow Reserve Computed Tomography).

    Techniques: Imaging, In Vivo, Diagnostic Assay, Functional Assay, Derivative Assay