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Page 20 of 22                  Andò et al. Vessel Plus 2023;7:15  https://dx.doi.org/10.20517/2574-1209.2023.26

               55.       Stone GW, Moses JW, Ellis SG, et al. Safety and efficacy of sirolimus- and paclitaxel-eluting coronary stents. N Engl J Med
                    2007;356:998-1008.  DOI
               56.       Kuntz RE, Gibson CM, Nobuyoshi M, Baim DS. Generalized model of restenosis after conventional balloon angioplasty, stenting and
                    directional atherectomy. J Am Coll Cardiol 1993;21:15-25.  DOI  PubMed
               57.       Iannaccone M, Barbero U, D’ascenzo F, et al. Rotational atherectomy in very long lesions: results for the ROTATE registry. Catheter
                    Cardiovasc Interv 2016;88:E164-72.  DOI
               58.       Abdel-Wahab M, Baev R, Dieker P, et al. Long-term clinical outcome of rotational atherectomy followed by drug-eluting stent
                    implantation in complex calcified coronary lesions. Catheter Cardiovasc Interv 2013;81:285-91.  DOI
               59.       Abdel-Wahab M, Richardt G, Joachim Büttner H, et al. High-speed rotational atherectomy before paclitaxel-eluting stent
                    implantation in complex calcified coronary lesions: the randomized ROTAXUS (Rotational Atherectomy Prior to Taxus Stent
                    Treatment for Complex Native Coronary Artery Disease) trial. JACC Cardiovasc Interv 2013;6:10-9.  DOI
               60.       Arora S, Panaich SS, Patel N, et al. Coronary atherectomy in the United States (from a nationwide inpatient sample). Am J Cardiol
                    2016;117:555-62.  DOI
               61.       Neumann FJ, Sousa-Uva M, Ahlsson A, et al. 2018 ESC/EACTS guidelines on myocardial revascularization. Eur Heart J
                    2019;40:87-165.  DOI
               62.       Barbato E, Carrié D, Dardas P, et al. European expert consensus on rotational atherectomy. EuroIntervention 2015;11:30-6.  DOI
               63.       Sharma SK, Tomey MI, Teirstein PS, et al. North American expert review of rotational atherectomy. Circ Cardiovasc Interv
                    2019;12:e007448.  DOI
               64.       Cavusoglu E, Kini AS, Marmur JD, Sharma SK. Current status of rotational atherectomy. Catheter Cardiovasc Interv 2004;62:485-
                    98.  DOI  PubMed
               65.       Kovach JA, Mintz GS, Pichard AD, et al. Sequential intravascular ultrasound characterization of the mechanisms of rotational
                    atherectomy and adjunct balloon angioplasty. J Am Coll Cardiol 1993;22:1024-32.  PubMed
               66.       Eltchaninoff H, Cribier A, Koning R, et al. Angioscopic evaluation of rotational atherectomy followed by additional balloon
                    angioplasty versus balloon angioplasty alone in coronary artery disease: a prospective, randomized study. J Am Coll Cardiol
                    1997;30:888-93.  DOI
               67.       de Waha S, Allali A, Büttner HJ, et al. Rotational atherectomy before paclitaxel-eluting stent implantation in complex calcified
                    coronary lesions: two-year clinical outcome of the randomized ROTAXUS trial. Catheter Cardiovasc Interv 2016;87:691-700.  DOI
               68.       Allali A, Abdel-Wahab M, Sulimov DS, et al. Comparison of bailout and planned rotational atherectomy for heavily calcified
                    coronary lesions: a single-center experience. J Interv Cardiol 2017;30:124-33.  DOI
               69.       Abdel-Wahab M, Toelg R, Byrne RA, et al. High-speed rotational atherectomy versus modified balloons prior to drug-eluting stent
                    implantation in severely calcified coronary lesions. Circ Cardiovasc Interv 2018;11:e007415.  DOI
               70.       Allali A, Richardt G, Toelg R, et al. High-speed rotational atherectomy versus modified balloons for plaque preparation of severely
                    calcified coronary lesions: two-year outcomes of the randomised PREPARE-CALC trial. EuroIntervention 2023;18:e1365-7.  DOI
                    PubMed  PMC
               71.       Safian RD, Feldman T, Muller DW, et al. Coronary angioplasty and Rotablator atherectomy trial (CARAT): immediate and late
                    results of a prospective multicenter randomized trial. Catheter Cardiovasc Interv 2001;53:213-20.  DOI
               72.       O’Neill WW, Kleiman NS, Moses J, et al. A prospective, randomized clinical trial of hemodynamic support with Impella 2.5 versus
                    intra-aortic balloon pump in patients undergoing high-risk percutaneous coronary intervention: the PROTECT II study. Circulation
                    2012;126:1717-27.  DOI
               73.       Sakakura K, Inohara T, Kohsaka S, et al. Incidence and determinants of complications in rotational atherectomy: insights from the
                    national clinical data (J-PCI registry). Circ Cardiovasc Interv 2016;9:e004278.  DOI
               74.       Giannini F, Candilio L, Mitomo S, et al. A practical approach to the management of complications during percutaneous coronary
                    intervention. JACC Cardiovasc Interv 2018;11:1797-810.  DOI
               75.       Koch KC, vom Dahl J, Kleinhans E, et al. Influence of a platelet GPIIb/IIIa receptor antagonist on myocardial hypoperfusion during
                    rotational atherectomy as assessed by myocardial Tc-99m sestamibi scintigraphy. J Am Coll Cardiol 1999;33:998-1004.  DOI
               76.       Sulimov DS, Abdel-Wahab M, Toelg R, Kassner G, Geist V, Richardt G. Stuck rotablator: the nightmare of rotational atherectomy.
                    EuroIntervention 2013;9:251-8.  DOI  PubMed
               77.       Sotomi Y, Shlofmitz RA, Colombo A, Serruys PW, Onuma Y. Patient selection and procedural considerations for coronary orbital
                    atherectomy system. Interv Cardiol 2016;11:33-8.  DOI  PubMed  PMC
               78.       Shlofmitz E, Martinsen BJ, Lee M, et al. Orbital atherectomy for the treatment of severely calcified coronary lesions: evidence,
                    technique, and best practices. Expert Rev Med Devices 2017;14:867-79.  DOI
               79.       Parikh K, Chandra P, Choksi N, Khanna P, Chambers J. Safety and feasibility of orbital atherectomy for the treatment of calcified
                    coronary lesions: the ORBIT I trial. Catheter Cardiovasc Interv 2013;81:1134-9.  DOI  PubMed
               80.       Chambers JW, Feldman RL, Himmelstein SI, et al. Pivotal trial to evaluate the safety and efficacy of the orbital atherectomy system
                    in treating de novo, severely calcified coronary lesions (ORBIT II). JACC Cardiovasc Interv 2014;7:510-8.  DOI
               81.       Lee MS, Shlofmitz E, Kaplan B, Alexandru D, Meraj P, Shlofmitz R. Real-world multicenter registry of patients with severe
                    coronary artery calcification undergoing orbital atherectomy. J Interv Cardiol 2016;29:357-62.  DOI  PubMed  PMC
               82.       Lee M, Généreux P, Shlofmitz R, et al. Orbital atherectomy for treating de novo, severely calcified coronary lesions: 3-year results of
                    the pivotal ORBIT II trial. Cardiovasc Revasc Med 2017;18:261-4.  DOI
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