参考文献/References:
[1] Ibanez B,James S,Agewall S,et al. 2017 ESC Guidelines for the management of acute myocardial infarction in patients presenting with ST-segment elevation:The Task Force for the management of acute myocardial infarction in patients presenting with ST-segment elevation of the European Society of Cardiology (ESC)[J]. Eur Heart J,2018,39(2):119-177.
[2] Pijls NH,van Schaardenburgh P,Manoharan G,et al. Percutaneous coronary intervention of functionally nonsignificant stenosis:5-year follow-up of the DEFER Study[J]. J Am Coll Cardiol,2007,49(21):2105-2111.
[3] Tonino PA,de Bruyne B,Pijls NH,et al. Fractional flow reserve versus angiography for guiding percutaneous coronary intervention[J]. N Engl J Med,2009,360(3):213-224.
[4] Fearon WF,Shilane D,Pijls NH,et al. Cost-effectiveness of percutaneous coronary intervention in patients with stable coronary artery disease and abnormal fractional flow reserve[J]. Circulation,2013,128(12):1335-1340.
[5] Fearon WF,Nishi T,de Bruyne B,et al. Clinical outcomes and cost-effectiveness of fractional flow reserve-guided percutaneous coronary intervention in patients with stable coronary artery disease:three-year follow-up of the FAME 2 trial (Fractional Flow Reserve Versus Angiography for Multivessel Evaluation)[J]. Circulation,2018,137(5):480-487.
[6] Johnson NP,Toth GG,Lai D,et al. Prognostic value of fractional flow reserve:linking physiologic severity to clinical outcomes[J]. J Am Coll Cardiol,2014,64(16):1641-1654.
[7] Neumann FJ,Sousa-Uva M,Ahlsson A,et al. 2018 ESC/EACTS Guidelines on myocardial revascularization[J]. Eur Heart J,2019,40(2):87-165.
[8] Koo BK,Erglis A,Doh JH,et al. Diagnosis of ischemia-causing coronary stenoses by noninvasive fractional flow reserve computed from coronary computed tomographic angiograms. Results from the prospective multicenter DISCOVER-FLOW (Diagnosis of Ischemia-Causing Stenoses Obtained Via Noninvasive Fractional Flow Reserve) study[J]. J Am Coll Cardiol,2011,58(19):1989-1997.
[9] Min JK,Leipsic J,Pencina MJ,et al. Diagnostic accuracy of fractional flow reserve from anatomic CT angiography[J]. JAMA,2012,308(12):1237-1245.
[10] N?rgaard BL,Leipsic J,Gaur S,et al. Diagnostic performance of noninvasive fractional flow reserve derived from coronary computed tomography angiography in suspected coronary artery disease:the NXT trial (Analysis of Coronary Blood Flow Using CT Angiography:Next Steps)[J]. J Am Coll Cardiol,2014,63(12):1145-1155.
[11] Cook CM,Petraco R,Shun-Shin MJ,et al. Diagnostic accuracy of computed tomography-derived fractional flow reserve:a systematic review[J]. JAMA Cardiol,2017,2(7):803-810.
[12] Zhuang B,Wang S,Zhao S,et al. Computed tomography angiography-derived fractional flow reserve (CT-FFR) for the detection of myocardial ischemia with invasive fractional flow reserve as reference:systematic review and meta-analysis[J]. Eur Radiol,2020,30(2):712-725.
[13] Luo Y,Mao M,Xiang R,et al. Diagnostic performance of computed tomography-based fraction flow reserve in identifying myocardial ischemia caused by coronary artery stenosis:a meta-analysis[J]. Hellenic J Cardiol,2022,63:1-7.
[14] Curzen N,Nicholas Z,Stuart B,et al. Fractional flow reserve derived from computed tomography coronary angiography in the assessment and management of stable chest pain:the FORECAST randomized trial[J]. Eur Heart J ,2021,42(37):3844-3852.
[15] Nanna MG,Vemulapalli S,Fordyce CB,et al. The prospective randomized trial of the optimal evaluation of cardiac symptoms and revascularization:rationale and design of the PRECISE trial[J]. Am Heart J,2022,245:136-148.
[16] Morris PD,Ryan D,Morton AC,et al. Virtual fractional flow reserve from coronary angiography:modeling the significance of coronary lesions:results from the VIRTU-1 (VIRTUal Fractional Flow Reserve From Coronary Angiography) study[J]. JACC Cardiovasc Interv,2013,6(2):149-157.
[17] Tu S,Xu L,Ligthart J,et al. In vivo comparison of arterial lumen dimensions assessed by co-registered three-dimensional (3D) quantitative coronary angiography,intravascular ultrasound and optical coherence tomography[J]. Int J Cardiovasc Imaging,2012,28(6):1315-1327.
[18] Tu S,Barbato E,Koszegi Z,et al. Fractional flow reserve calculation from 3-dimensional quantitative coronary angiography and TIMI frame count:a fast computer model to quantify the functional significance of moderately obstructed coronary arteries[J]. JACC Cardiovasc Interv,2014,7(7):768-777.
[19] Tu S,Westra J,Yang J,et al. Diagnostic accuracy of fast computational approaches to derive fractional flow reserve from diagnostic coronary angiography:the international multicenter FAVOR pilot study[J]. JACC Cardiovasc Interv,2016,9(19):2024-2035.
[20] Westra J,Tu S,Campo G,et al. Diagnostic performance of quantitative flow ratio in prospectively enrolled patients:an individual patient‐data meta‐analysis[J]. Catheter Cardiovasc Interv,2019,94(5):693-701.
[21] Cortés C,Carrasco-Moraleja M,Aparisi A,et al. Quantitative flow ratio—Meta-analysis and systematic review[J]. Catheter Cardiovasc Interv,2021,97(5):807-814.
[22] Xu B,Tu S,Song L,et al. Angiographic quantitative flow ratio-guided coronary intervention (FAVOR Ⅲ China) :a multicentre,randomised,sham-controlled trial[J]. Lancet,2021,398(10317):2149-2159.
[23] Yu W,Huang J,Jia D,et al. Diagnostic accuracy of intracoronary optical coherence tomography-derived fractional flow reserve for assessment of coronary stenosis severity[J]. EuroIntervention,2019,15(2):189-197.
[24] Huang J,Emori H,Ding D,et al. Diagnostic performance of intracoronary optical coherence tomography-based versus angiography-based fractional flow reserve for the evaluation of coronary lesions[J]. EuroIntervention,2020,16(7):568-576.
[25] 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[J]. Cardiol J,2020,27(4):350-361.
[26] Emori H,Kubo T,Shiono Y,et al. Comparison of optical flow ratio and fractional flow ratio in stent-treated arteries immediately after percutaneous coronary intervention[J]. Circ J,2020,84(12):2253-2258.
[27] Ding D,Yu W,Tauzin H,et al. Optical flow ratio for assessing stenting result and physiological significance of residual disease[J]. EuroIntervention,2021:17(12):e989-e998.
[28] Yu W,Tanigaki T,Ding D,et al. Accuracy of intravascular ultrasound-based fractional flow reserve in identifying hemodynamic significance of coronary stenosis[J]. Circ Cardiovasc Interv,2021,14(2):e009840.
[29] Roguin A,Abu Dogosh A,Feld Y,et al. Early feasibility of automated artificial intelligence angiography based fractional flow reserve estimation[J]. Am J Cardiol,2021,139:8-14.
[30] Tesche C,de Cecco CN,Baumann S,et al. Coronary CT angiography-derived fractional flow reserve:machine learning algorithm versus computational fluid dynamics modeling[J]. Radiology,2018,288(1):64-72.
[31] Cha JJ,Son TD,Ha J,et al. Optical coherence tomography-based machine learning for predicting fractional flow reserve in intermediate coronary stenosis:a feasibility study[J]. Sci Rep,2020,10(1):20421.
[32] Kurata A,Fukuyama N,Hirai K,et al. On-site computed tomography-derived fractional flow reserve using a machine-learning algorithm-clinical effectiveness in a retrospective multicenter cohort[J]. Circ J,2019,83(7):1563-1571.
[33] von Knebel Doeberitz PL,de Cecco CN,Schoepf UJ,et al. Coronary CT angiography-derived plaque quantification with artificial intelligence CT fractional flow reserve for the identification of lesion-specific ischemia[J]. Eur Radiol,2019,29(5):2378-2387.
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