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Review

Latest developments in chronic total occlusion percutaneous coronary intervention

, , , , , , , , , , , & show all
Pages 415-426 | Received 26 Apr 2020, Accepted 22 Jun 2020, Published online: 13 Jul 2020

References

  • Brilakis E. Manual of chronic total occlusion interventions: a step-by-step approach. Cambridge, Massachusetts: Academic Press; 2017.
  • Quadros A, Belli KC, de Paula JET, et al. Chronic total occlusion percutaneous coronary intervention in Latin America. Catheterization Cardiovasc Interventions. 2020. DOI:10.1002/ccd.28744.
  • Tajti P, Alaswad K, Karmpaliotis D, et al. Procedural outcomes of percutaneous coronary interventions for chronic total occlusions via the radial approach: insights from an international chronic total occlusion registry. JACC Cardiovasc Interventions. 2019 Feb 25;12(4):346–358. PubMed PMID: 30784639; eng.
  • Suzuki Y, Tsuchikane E, Katoh O, et al. Outcomes of percutaneous coronary interventions for chronic total occlusion performed by highly experienced Japanese specialists: the first report from the Japanese CTO-PCI expert registry. JACC Cardiovasc Interventions. 2017 Nov 13;10(21):2144–2154. PubMed PMID: 29055764; eng.
  • Tajti P, Burke MN, Karmpaliotis D, et al. Update in the percutaneous management of coronary chronic total occlusions. JACC Cardiovasc Interv. 2018 Apr 09;11(7):615–625.
  • Brilakis ES, Mashayekhi K, Tsuchikane E, et al. Guiding principles for chronic total occlusion percutaneous coronary intervention: a global expert consensus document. Circulation. 2019;140(5):420–433.
  • Werner GS, Martin-Yuste V, Hildick-Smith D, et al. A randomized multicentre trial to compare revascularization with optimal medical therapy for the treatment of chronic total coronary occlusions. Eur Heart J. 2018;39(26):2484–2493.
  • Obedinskiy AA, Kretov EI, Boukhris M, et al. The IMPACTOR-CTO Trial. JACC Cardiovasc Interv. 2018;11(13):1309–1311.
  • Lee S-W, Lee PH, Ahn J-M, et al. Randomized trial evaluating percutaneous coronary intervention for the treatment of chronic total occlusion: the DECISION-CTO Trial. Circulation. 2019;139(14):1674–1683.
  • Sheehy JP, Qintar M, Arnold SV, et al. Anti-anginal medication titration among patients with residual angina 6-months after chronic total occlusion percutaneous coronary intervention: insights from OPEN CTO registry. Eur Heart J Qual Care Clin Outcomes. 2019 Oct 1;5(4):370–379. PubMed PMID: 30895291; eng.
  • Flores-Umanzor EJ, Vazquez S, Cepas-Guillen P, et al. Impact of revascularization versus medical therapy alone for chronic total occlusion management in older patients. Catheter Cardiovasc Interv. 2019 Oct 1;94(4):527–535. PubMed PMID: 30828975; eng.
  • Hirai T, Grantham JA, Sapontis J, et al. Quality of life changes after chronic total occlusion angioplasty in patients with baseline refractory angina. Circ Cardiovasc Interventions. 2019 Mar;12(3):e007558. PubMed PMID: 30871356; eng.
  • Salisbury AC, Sapontis J, Saxon JT, et al. Association of stress test risk classification with health status after chronic total occlusion angioplasty (from the Outcomes, Patient Health Status and Efficiency in Chronic Total Occlusion Hybrid Procedures [OPEN-CTO] Study). Am J Cardiol. 2018 Mar 1;121(5):558–563. PubMed PMID: 29289358; eng.
  • Khariton Y, Airhart S, Salisbury AC, et al. Health status benefits of successful chronic total occlusion revascularization across the spectrum of left ventricular function: insights from the OPEN-CTO registry. JACC Cardiovasc Interv. 2018 Nov 26;11(22):2276–2283.
  • Yeh RW, Tamez H, Secemsky EA, et al. Depression and angina among patients undergoing chronic total occlusion percutaneous coronary intervention: the OPEN-CTO registry. JACC Cardiovasc Interventions. 2019 Apr 8;12(7):651–658. PubMed PMID: 30878475; eng.
  • Shen Y, Ding FH, Dai Y, et al. Reduced coronary collateralization in type 2 diabetic patients with chronic total occlusion. Cardiovasc Diabetol. 2018 Feb 8;17(1):26. PubMed PMID: 29422093; PubMed Central PMCID: PMCPMC5804044. eng.
  • Iglesias JF, Degrauwe S, Rigamonti F, et al. Percutaneous coronary intervention of chronic total occlusions in patients with diabetes mellitus: a treatment-risk paradox. Curr Cardiol Rep. 2019 Feb 21;21(2):9. PubMed PMID: 30790113; eng.
  • Cheney A, Kearney KE, Lombardi W. Sex-based differences in chronic total occlusion management. Curr Atheroscler Rep. 2018 Nov 7;20(12):60. PubMed PMID: 30406420; eng.
  • Henriques JP, Hoebers LP, Råmunddal T, et al. Percutaneous intervention for concurrent chronic total occlusions in patients with STEMI: the EXPLORE trial. J Am Coll Cardiol. 2016;68(15):1622–1632.
  • Mashayekhi K, Nührenberg TG, Toma A, et al. A randomized trial to assess regional left ventricular function after stent implantation in chronic total occlusion. REVASC Trial. 2018;11(19):1982–1991.
  • Jaber WA. Chronic total occlusion intervention. Case More Evidence. 2018;11(19):1992–1994.
  • Chi WK, Gong M, Bazoukis G, et al. Impact of coronary artery chronic total occlusion on arrhythmic and mortality outcomes: a systematic review and meta-analysis. JACC Clin Electrophysiol. 2018 Sep;4(9):1214–1223. PubMed PMID: 30236396; eng.
  • Behnes M, Akin I, Kuche P, et al. Coronary chronic total occlusions and mortality in patients with ventricular tachyarrhythmias. EuroIntervention. 2020 Feb 20;15(14):1278–1285. PubMed PMID: 30666964; eng.
  • Myat A, Patel M, Silberbauer J, et al. Chronic total coronary occlusion revascularisation positively modifies infarct-related myocardial scar responsible for recurrent ventricular tachycardia. EuroIntervention. 2019 Jul 2. DOI:10.4244/eij-d-18-01117. PubMed PMID: 31270033; eng.
  • Wang ZQ, Qiang H, Luo X, et al. Meta-analysis of risk of ventricular arrhythmias and all-cause mortality in patients with chronic total occlusion of a coronary artery and/or implantable cardioverter-defibrillator. Am J Cardiol. 2018 May 15;121(10):1149–1154. PubMed PMID: 29548677; eng.
  • Konig S, Boudriot E, Arya A, et al. Incidence and characteristics of ventricular tachycardia in patients after percutaneous coronary revascularization of chronic total occlusions. PloS One. 2019;14(11):e0225580. PubMed PMID: 31756220; PubMed Central PMCID: PMCPMC6874319. eng.
  • Werner G The three-year safety analysis from the randomized multicenter trial to evaluate the utilization of revascularization or optimal medical therapy for the treatment of chronic total coronary occlusions. Presented at: TCT 2019, San Francisco, CA; 2019 Sep 28.
  • Allahwala UK, Jolly SS, Džavík V, et al. The presence of a CTO in a non–infarct-related artery during a STEMI treated with contemporary primary PCI Is associated with increased rates of early and late cardiovascular morbidity and mortality. CTO-TOTAL Substudy. 2018;11(7):709–711.
  • Watanabe H, Morimoto T, Shiomi H, et al. Chronic total occlusion in non‐infarct‐related artery is associated with increased short‐and long‐term mortality in patients with ST‐segment elevation acute myocardial infarction complicated by cardiogenic shock (from the CREDO‐K yoto AMI registry). Catheterization Cardiovasc Interv. 2018;92(3):455–463.
  • Villablanca PA, Olmedo W, Weinreich M, et al. Staged percutaneous intervention for concurrent chronic total occlusions in patients with ST‐segment–elevation myocardial infarction: a systematic review and meta‐analysis. J Am Heart Assoc. 2018;7(8):e008415.
  • Elias J, van Dongen IM, Ramunddal T, et al. Long-term impact of chronic total occlusion recanalisation in patients with ST-elevation myocardial infarction. Heart. 2018 Sep;104(17):1432–1438. PubMed PMID: 29463612; eng.
  • van Veelen A, van Dongen IM, Elias J, et al. Exercise testing after chronic total coronary occlusion revascularization in patients with STEMI and a concurrent CTO: A subanalysis of the EXPLORE-trial. Catheter Cardiovasc Interv. 2019 Oct 1;94(4):536–545. PubMed PMID: 30968546; eng.
  • Xenogiannis I, Nikolakopoulos I, Vemmou E, et al. Chronic total occlusion recanalization for myocardial infarction. Catheterization Cardiovasc Interventions. 2019;95(6):1133-1135.
  • Brilakis ES, O’Donnell CI, Penny W, et al. Percutaneous coronary intervention in native coronary arteries versus bypass grafts in patients with prior coronary artery bypass graft surgery: insights from the veterans affairs clinical assessment, reporting, and tracking program. JACC Cardiovasc Interv. 2016 May 09;9(9):884–893.
  • Azzalini L, Candilio L, Ojeda S, et al. Impact of incomplete revascularization on long-term outcomes following chronic total occlusion percutaneous coronary intervention. Am J Cardiol. 2018 May 15;121(10):1138–1148. PubMed PMID: 29563016; eng.
  • Goel PK, Khanna R, Pandey CM, et al. Long-term outcomes post chronic total occlusion intervention-implications of completeness of revascularization. J Interv Cardiol. 2018 Jun;31(3):293–301. PubMed PMID: 29314289; eng.
  • Xenogiannis I, Karmpaliotis D, Alaswad K, et al. Impact of concomitant treatment of non-chronic total occlusion lesions at the time of chronic total occlusion intervention. Int J Cardiol. 2020 Jan 15;299:75–80. PubMed PMID: 31301862; eng.
  • Othman H, Seth M, Zein R, et al. Percutaneous coronary intervention for chronic total occlusion—the michigan experience. Insights BMC2 Regist. 2020;13(11):1357–1368.
  • Christopoulos G, Karmpaliotis D, Alaswad K, et al. Application and outcomes of a hybrid approach to chronic total occlusion percutaneous coronary intervention in a contemporary multicenter US registry. Int J Cardiol. 2015;198:222–228.
  • Habara M, Tsuchikane E, Muramatsu T, et al. Comparison of percutaneous coronary intervention for chronic total occlusion outcome according to operator experience from the Japanese retrograde summit registry. Catheterization Cardiovasc Interventions. 2016;87(6):1027–1035.
  • Wilson W, Walsh S, Yan A, et al. Hybrid approach improves success of chronic total occlusion angioplasty. Heart. 2016;102(18):1486–1493.
  • Maeremans J, Walsh S, Knaapen P, et al. The hybrid algorithm for treating chronic total occlusions in Europe: the RECHARGE registry. J Am Coll Cardiol. 2016;68(18):1958–1970.
  • Sapontis J, Salisbury AC, Yeh RW, et al. Early procedural and health status outcomes after chronic total occlusion angioplasty: a report from the OPEN-CTO registry (Outcomes, Patient Health Status, and Efficiency in Chronic Total Occlusion Hybrid Procedures). JACC Cardiovasc Interv. 2017;10(15):1523–1534.
  • Tajti P, Karmpaliotis D, Alaswad K, et al. The hybrid approach to chronic total occlusion percutaneous coronary intervention: update from the PROGRESS CTO registry. JACC Cardiovasc Interventions. 2018 Jul 23;11(14):1325–1335. PubMed PMID: 29706508; eng.
  • Hannan EL, Zhong Y, Jacobs AK, et al. Patients with chronic total occlusions undergoing percutaneous coronary interventions: characteristics, success, and outcomes. Circulation: Cardiovasc Interventions. 2016;9(5):e003586.
  • Brilakis ES, Banerjee S, Karmpaliotis D, et al. Procedural outcomes of chronic total occlusion percutaneous coronary intervention: a report from the. Rep NCDR (National Cardiovascular Data Registry). 2015;8(2):245–253.
  • Kinnaird T, Gallagher S, Cockburn J, et al., British Cardiovascular Intervention Society and the National Institute for Cardiovascular Outcomes Research. Procedural success and outcomes with increasing use of enabling strategies for chronic total occlusion intervention: an analysis of 28 050 cases from the British Cardiovascular Intervention Society database. Circulation: Cardiovasc Interventions. 2018;11(10):e006436.
  • Young MN, Secemsky EA, Kaltenbach LA, et al. Examining the operator learning curve for percutaneous coronary intervention of chronic total occlusions: a report from the national cardiovascular data registry. Circulation: Cardiovasc Interventions. 2019;12(8):e007877.
  • Kinnaird T, Gallagher S, Spratt JC, et al. Complex high-risk and indicated percutaneous coronary intervention for stable angina: does operator volume influence patient outcome? Am Heart J. 2020 Apr;222:15–25. PubMed PMID: 32004796; eng.
  • Sandoval Y, Tajti P, Karatasakis A, et al. Frequency and outcomes of Ad Hoc versus planned chronic total occlusion percutaneous coronary intervention: multicenter experience. J Invasive Cardiol. 2019 May;31(5):133–139. PubMed PMID: 30643040; eng.
  • Alessandrino G, Chevalier B, Lefevre T, et al. A clinical and angiographic scoring system to predict the probability of successful first-attempt percutaneous coronary intervention in patients with total chronic coronary occlusion. JACC Cardiovasc Interventions. 2015 Oct;8(12):1540–1548. PubMed PMID: 26493246; eng.
  • Ellis SG, Burke MN, Murad MB, et al. Predictors of successful hybrid-approach chronic total coronary artery occlusion stenting: an improved model with novel correlates. JACC Cardiovasc Interv. 2017 Jun 12;10(11):1089–1098. PubMed PMID: 28595879; eng.
  • Galassi AR, Boukhris M, Azzarelli S, et al. Percutaneous coronary revascularization for chronic total occlusions: a novel predictive score of technical failure using advanced technologies. JACC Cardiovasc Interventions. 2016 May 9;9(9):911–922. PubMed PMID: 27085580; eng.
  • Vemmou E, Nikolakopoulos I, Brilakis ES. Chronic total occlusion percutaneous coronary intervention scores: present and future. EuroIntervention. 2020 Apr 3;15(18):e1564–e1566. PubMed PMID: 32234689; eng.
  • Szijgyarto Z, Rampat R, Werner GS, et al. Derivation and validation of a chronic total coronary occlusion intervention procedural success score from the 20,000-patient EuroCTO registry: the EuroCTO (CASTLE) score. JACC Cardiovasc Interventions. 2019 Feb 25;12(4):335–342. PubMed PMID: 30711551; eng.
  • Abe M, Morimoto T, Morino Y, et al. Association between J-CTO score and long-term target lesion revascularization rate after successful chronic total coronary occlusion angioplasty (from the J-CTO Registry). Catheter Cardiovasc Interv. 2019 May 1;93(6):1025–1032. PubMed PMID: 30723999; eng.
  • Morino Y, Abe M, Morimoto T, et al. Predicting successful guidewire crossing through chronic total occlusion of native coronary lesions within 30 minutes: the J-CTO (Multicenter CTO Registry in Japan) score as a difficulty grading and time assessment tool. JACC Cardiovasc Interventions. 2011 Feb;4(2):213–221. PubMed PMID: 21349461; eng.
  • Christopoulos G, Kandzari DE, Yeh RW, et al. Development and Validation of a novel scoring system for predicting technical success of chronic total occlusion percutaneous coronary interventions: the PROGRESS CTO (Prospective Global Registry for the Study of Chronic Total Occlusion Intervention) score. JACC Cardiovasc Interventions. 2016 Jan 11;9(1):1–9. PubMed PMID: 26762904; eng.
  • Maeremans J, Spratt JC, Knaapen P, et al. Towards a contemporary, comprehensive scoring system for determining technical outcomes of hybrid percutaneous chronic total occlusion treatment: the RECHARGE score. Catheter Cardiovasc Interv. 2018 Feb 1;91(2):192–202. PubMed PMID: 28471074; eng.
  • Rentrop KP, Cohen M, Blanke H, et al. Changes in collateral channel filling immediately after controlled coronary artery occlusion by an angioplasty balloon in human subjects. J Am Coll Cardiol. 1985 Mar;5(3):587–592. PubMed PMID: 3156171; eng.
  • Werner GS, Ferrari M, Heinke S, et al. Angiographic assessment of collateral connections in comparison with invasively determined collateral function in chronic coronary occlusions. Circulation. 2003 Apr 22;107(15):1972–1977. PubMed PMID: 12665484; eng.
  • Li C, Xu R, Shen Y, et al. Bivalirudin in percutaneous coronary intervention for chronic total occlusion: a single-center pilot study. Catheter Cardiovasc Interv. 2018 Mar 1;91(4):679–685. PubMed PMID: 28766879; eng.
  • Kinnaird T, Anderson R, Gallagher S, et al. Vascular access site and outcomes in 58,870 patients undergoing percutaneous coronary intervention with a previous history of coronary bypass surgery: results from the British Cardiovascular Interventions Society national database. JACC Cardiovasc Interventions. 2018 Mar 12;11(5):482–492. PubMed PMID: 29519382; eng.
  • Megaly M, Karatasakis A, Abraham B, et al. Radial versus femoral access in chronic total occlusion percutaneous coronary intervention. Circ Cardiovasc Interventions. 2019 Jun;12(6):e007778. PubMed PMID: 31195826; eng.
  • Gasparini GL, Garbo R, Gagnor A, et al. First prospective multicentre experience with left distal transradial approach for coronary chronic total occlusion interventions using a 7 Fr Glidesheath Slender. EuroIntervention. 2019;15(1):126–128.
  • Nikolakopoulos I, Patel T, Jefferson BK, et al. Distal radial access in chronic total occlusion percutaneous coronary intervention: insights from the PROGRESS-CTO registry. J Invasive Cardiol. In press.
  • Iannaccone M, Brilakis ES, Boccuzzi GG. An App for complex PCI solutions: a newly developed PCI App is described during use for: ‘A distal coronary artery perforation’ during a procedure. Eur Heart J. 2020;41(3):342–344.
  • Brilakis ES, Grantham JA, Rinfret S, et al. A percutaneous treatment algorithm for crossing coronary chronic total occlusions. JACC Cardiovasc Interventions. 2012 Apr;5(4):367–379. PubMed PMID: 22516392; eng.
  • Harding SA, Wu EB, Lo S, et al. A new algorithm for crossing chronic total occlusions from the Asia Pacific chronic total occlusion club. JACC Cardiovasc Interv. 2017 Nov 13;10(21):2135–2143.
  • Galassi AR, Werner GS, Boukhris M, et al. Percutaneous recanalisation of chronic total occlusions: 2019 consensus document from the EuroCTO club. EuroIntervention. 2019;15(2):198–208.
  • Tanaka H, Tsuchikane E, Muramatsu T, et al. A novel algorithm for treating chronic total coronary artery occlusion. J Am Coll Cardiol. 2019;74(19):2392–2404.
  • Okamura A, Iwakura K, Iwamoto M, et al. Tip detection method using the new IVUS facilitates the 3-dimensional wiring technique for CTO intervention. JACC Cardiovasc Interv. 2020 Jan 13;13(1):74–82.
  • Vemmou E, Nikolakopoulos I, Xenogiannis I, et al. Recent advances in microcatheter technology for the treatment of chronic total occlusions. Expert Rev Med Devices. 2019 Apr;16(4):267–273. PubMed PMID: 30929525; eng.
  • Xenogiannis I, Karmpaliotis D, Alaswad K, et al. Usefulness of atherectomy in chronic total occlusion interventions (from the PROGRESS-CTO registry). Am J Cardiol. 2019 May 1;123(9):1422–1428. PubMed PMID: 30798947; eng.
  • Azzalini L, Bellini B, Montorfano M, et al. Intravascular lithotripsy in chronic total occlusion percutaneous coronary intervention. EuroIntervention. 2019 Dec 6;15(11):e1025–e1026. PubMed PMID: 31012852; eng.
  • Khelimskii D, Badoyan A, Krestyaninov O. The deep-wire crossing technique: a novel method for treating balloon-uncrossable lesions. J Invasive Cardiol. 2019 Dec;31(12):E362–e368. PubMed PMID: 31786527; eng.
  • Xhepa E, Cassese S, Rroku A, et al. Subintimal versus intraplaque recanalization of coronary chronic total occlusions: mid-term angiographic and OCT findings from the ISAR-OCT-CTO registry. JACC Cardiovasc Interventions. 2019 Oct 14;12(19):1889–1898. PubMed PMID: 31521651; eng.
  • Ali ZA, Karimi Galougahi K, Shlofmitz RA, et al. The “Oculo-Appositional Reflex”: should optical coherence tomography-detected stent malapposition be corrected? J Am Heart Assoc. 2019 Apr 2;8(7):e012262. PubMed PMID: 30907208; PubMed Central PMCID: PMCPMC6509721. eng.
  • Karacsonyi J, Tajti P, Rangan BV, et al. Randomized comparison of a CrossBoss first versus standard wire escalation strategy for crossing coronary chronic total occlusions: the CrossBoss first trial. JACC Cardiovasc Interventions. 2018 Feb 12;11(3):225–233. PubMed PMID: 29413236; eng.
  • Wu EB, Brilakis ES, Lo S, et al. Advances in CrossBoss/stingray use in antegrade dissection reentry from the Asia Pacific chronic total occlusion club. Catheter Cardiovasc Interv. 2019 Nov 26. DOI:10.1002/ccd.28607. PubMed PMID: 31769597; eng.
  • Tajti P, Xenogiannis I, Gargoulas F, et al. Contemporary outcomes of the retrograde approach to chronic total occlusion interventions: insights from an international CTO registry. EuroIntervention. 2019.
  • Zivelonghi C, van Andel M, Venturi G, et al. Angiographic and clinical outcomes of antegrade versus retrograde techniques for chronic total occlusion revascularizations: insights from the PRISON IV trial. Catheter Cardiovasc Interv. 2019 Feb 1;93(2):E81–e89. PubMed PMID: 30280464; eng.
  • Hirai T, Nicholson WJ, Sapontis J, et al. A detailed analysis of perforations during chronic total occlusion angioplasty. JACC Cardiovasc Interventions. 2019 Oct 14;12(19):1902–1912. PubMed PMID: 31255554; eng.
  • Osung K, Pil Hyung L, Seung-Whan L, et al. Retrograde approach for the percutaneous recanalisation of coronary chronic total occlusions: contribution to clinical practice and long-term outcomes. EuroIntervention. 2019;15(4):e354–e361.
  • Megaly M, Xenogiannis I, Abi Rafeh N, et al. Retrograde approach to chronic total occlusion percutaneous coronary intervention. Circ Cardiovasc Interventions. 2020 May;13(5):e008900. PubMed PMID: 32338524; eng.
  • Xenogiannis I, Gkargkoulas F, Karmpaliotis D, et al. Retrograde chronic total occlusion percutaneous coronary intervention via saphenous vein graft. JACC Cardiovasc Interv. 2020;13(4):517–526.
  • Nagamatsu W, Tsuchikane E, Oikawa Y, et al. Successful guidewire crossing via collateral channel at retrograde percutaneous coronary intervention for chronic total occlusion: the J-Channel score. EuroIntervention. 2020 Apr 3;15(18):e1624–e1632. PubMed PMID: 31012850; eng.
  • Hirai T, Grantham JA, Sapontis J, et al. Impact of subintimal plaque modification procedures on health status after unsuccessful chronic total occlusion angioplasty. Catheter Cardiovasc Interv. 2018 May 1;91(6):1035–1042. PubMed PMID: 29068126; eng.
  • Xenogiannis I, Choi JW, Alaswad K, et al. Outcomes of subintimal plaque modification in chronic total occlusion percutaneous coronary intervention. Catheter Cardiovasc Interv. 2019 Dec 4. DOI:10.1002/ccd.28614. PubMed PMID: 31797507; eng.
  • Goleski PJ, Nakamura K, Liebeskind E, et al. Revascularization of coronary chronic total occlusions with subintimal tracking and reentry followed by deferred stenting: experience from a high-volume referral center. Catheter Cardiovasc Interv. 2019 Feb 1;93(2):191–198. PubMed PMID: 30411863; eng.
  • Hall AB, Brilakis ES. Hybrid 2.0: subintimal plaque modification for facilitation of future success in chronic total occlusion percutaneous coronary intervention. Catheter Cardiovasc Interv. 2019 Feb 1;93(2):199–201. PubMed PMID: 30719852; eng.
  • Neupane S, Basir M, Alaswad K. Electrocautery-Facilitated Crossing (ECFC) of chronic total occlusions. J Invasive Cardiol. 2020 Feb;32(2):55–57. PubMed PMID: 31958072; eng.
  • Malik AH, Yandrapalli S, Aronow WS, et al. Intravascular ultrasound-guided stent implantation reduces cardiovascular mortality - updated meta-analysis of randomized controlled trials. Int J Cardiol. 2020 Jan 15;299:100–105. PubMed PMID: 31345647; eng.
  • Kim D, Hong SJ, Kim BK, et al. Outcomes of stent optimisation in intravascular ultrasound-guided intervention for long or chronic totally occluded coronary lesions. EuroIntervention. 2019 Dec 10. DOI:10.4244/eij-d-19-00762. PubMed PMID: 31829943; eng.
  • Yoon YH, Lee PH, Lee SW, et al. Importance of stent optimization for favourable outcomes after percutaneous coronary intervention for chronic in-stent occlusions. EuroIntervention. 2019 Dec 3. DOI:10.4244/eij-d-19-00650. PubMed PMID: 31793885; eng.
  • Danek BA, Basir MB, O’Neill WW, et al. Mechanical circulatory support in chronic total occlusion percutaneous coronary intervention: insights from a Multicenter U.S. registry. J Invasive Cardiol. 2018 Mar;30(3):81–87. PubMed PMID: 29493509; eng.
  • Riley RF, McCabe JM, Kalra S, et al. Impella-assisted chronic total occlusion percutaneous coronary interventions: A multicenter retrospective analysis. Catheter Cardiovasc Interv. 2018 Dec 1;92(7):1261–1267. PubMed PMID: 30019817; eng.
  • Azzalini L, Poletti E, Ayoub M, et al. Coronary artery perforation during chronic total occlusion percutaneous coronary intervention: epidemiology, mechanisms, management, and outcomes. EuroIntervention. 2019;15(9):e804.
  • Kinnaird T, Anderson R, Ossei-Gerning N, et al. Legacy effect of coronary perforation complicating percutaneous coronary intervention for chronic total occlusive disease: an analysis of 26 807 cases from the British cardiovascular intervention society database. Circ Cardiovasc Interventions. 2017 May;10(5). DOI:10.1161/circinterventions.116.004642. PubMed PMID: 28500138; eng.
  • Hernandez-Enriquez M, Lairez O, Campelo-Parada F, et al. Outcomes after use of covered stents to treat coronary artery perforations. Comparison of old and new-generation covered stents. J Interv Cardiol. 2018 Oct;31(5):617–623. PubMed PMID: 29808511; eng.
  • Tajti P, Xenogiannis I, Hall A, et al. Use of the DyeVert system in chronic total occlusion percutaneous coronary intervention. J Invasive Cardiol. 2019 Sep;31(9):253–259. PubMed PMID: 31478890; eng.
  • Ge L, Zhong X, Ma J, et al. Safety and feasibility of a low frame rate protocol for percutaneous coronary intervention to chronic total occlusions: preliminary experience. EuroIntervention. 2018 Aug 3;14(5):e538–e545. PubMed PMID: 29104180; eng.
  • Costa F, Van Klaveren D, Feres F, et al. Dual antiplatelet therapy duration based on ischemic and bleeding risks after coronary stenting. J Am Coll Cardiol. 2019 Feb 26;73(7):741–754.

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