Page 215 - Read Online
P. 215

Rodrigues et al. Vessel Plus 2024;8:10  https://dx.doi.org/10.20517/2574-1209.2023.109   Page 15 of 15

                   PubMed
               42.      Mendes BC, Oderich GS, Reis de Souza L, et al. Implications of renal artery anatomy for endovascular repair using fenestrated,
                   branched, or parallel stent graft techniques. J Vasc Surg 2016;63:1163-9.e1.  DOI
               43.      Martin-Gonzalez T, Mastracci T, Carrell T, et al. Mid-term outcomes of renal branches versus renal fenestrations for thoraco-
                   abdominal aneurysm repair. Eur J Vasc Endovasc Surg 2016;52:141-8.  DOI
               44.      Sugimoto M, Panuccio G, Bisdas T, Berekoven B, Torsello G, Austermann M. Tortuosity is the significant predictive factor for renal
                   branch occlusion after branched endovascular aortic aneurysm repair. Eur J Vasc Endovasc Surg 2016;51:350-7.  DOI  PubMed
               45.      Tenorio ER, Kärkkäinen JM, Mendes BC, et al. Outcomes of directional branches using self-expandable or balloon-expandable stent
                   grafts during endovascular repair of thoracoabdominal aortic aneurysms. J Vasc Surg 2020;71:1489-502.e6.  DOI
               46.      Tenorio ER, Schanzer A, Timaran CH, et al; U. S. Fenestrated and Branched Aortic Research Consortium. Mid-term renal and
                   mesenteric artery outcomes during fenestrated and branched endovascular aortic repair for complex abdominal and thoracoabdominal
                   aortic aneurysms in the united states aortic research consortium. Ann Surg 2023;278:e893-902.  DOI
               47.      Kim S, Parodi FE, Farber MA. Choice of optimal bridging stent and methods of visceral vessel incorporation during fenestrated/
                   branched endovascular aortic repair for thoracoabdominal and complex abdominal aortic aneurysms. Semin Vasc Surg 2022;35:280-6.
                   DOI  PubMed
               48.      Tenorio ER, Schanzer A, Timaran CH, et al; U. S. Fenestrated and Branched Aortic Research Consortium. Effect of bridging stent
                   graft selection for directional branches on target artery outcomes of fenestrated-branched endovascular aortic repair in the United
                   States Aortic Research Consortium. J Vasc Surg 2023;78:10-28.e3.  DOI
               49.      Lima GBB, Dias-Neto M, Tenorio ER, Baghbani-Oskouei A, Oderich GS. Endovascular repair of complex aortic aneurysms. Adv Surg
                   2022;56:305-19.  DOI  PubMed
               50.      Porras-Colon J, Knowles M, Timaran CH. Outcomes and strategies for utilization of brachial access and preloaded systems during
                   F/BEVAR. Semin Vasc Surg 2022;35:287-96.  DOI
               51.      Bertoglio L, Mascia D, Cambiaghi T, Kahlberg A, Melissano G, Chiesa R. Percutaneous axillary artery access for fenestrated and
                   branched thoracoabdominal endovascular repair. J Vasc Surg 2018;68:12-23.  DOI  PubMed
               52.      Agrusa CJ, Connolly PH, Ellozy SH, Schneider DB. Safety and effectiveness of percutaneous axillary artery access for complex aortic
                   interventions. Ann Vasc Surg 2019;61:326-33.  DOI  PubMed
               53.      Al Adas Z, Uceda D, Mazur A, et al. Safety and learning curve of percutaneous axillary artery access for complex endovascular aortic
                   procedures. J Vasc Surg 2024;79:487-96.  DOI
               54.      Chamseddin KH, Timaran CH, Scott CK, et al. Outcomes of upper extremity versus transfemoral access for fenestrated-branched
                   endovascular aortic repair. J Vasc Surg 2022;75:e41.  DOI
               55.      Mirza AK, Tenorio ER, Marcondes GB, et al. Comparison of cerebral embolic events between right and left upper extremity access
                   during fenestrated/branched endovascular aortic repair. J Endovasc Ther 2021;28:70-7.  DOI
               56.      Motyl CM, Beck AW. Strategies for prevention and treatment of spinal cord ischemia during F/BEVAR. Semin Vasc Surg
                   2022;35:297-305.  DOI
               57.      Aucoin VJ, Bolaji B, Novak Z, et al. Trends in the use of cerebrospinal drains and outcomes related to spinal cord ischemia after
                   thoracic endovascular aortic repair and complex endovascular aortic repair in the vascular quality initiative database. J Vasc Surg
                   2021;74:1067-78.  DOI
               58.      Griepp RB, Griepp EB. Spinal cord perfusion and protection during descending thoracic and thoracoabdominal aortic surgery: the
                   collateral network concept. Ann Thorac Surg 2007;83:S865-9.  DOI  PubMed
               59.      Rocha RV, Lindsay TF, Friedrich JO, et al. Systematic review of contemporary outcomes of endovascular and open thoracoabdominal
                   aortic aneurysm repair. J Vasc Surg 2020;71:1396-412.e12.  DOI
               60.      Rocha  RV,  Lindsay  TF,  Austin  PC,  Al-Omran  M, et  al.  Outcomes  after  endovascular  versus  open thoracoabdominal
                   aortic aneurysm repair: a population-based study. J Thorac Cardiovasc Surg 2021;161:516-27.e6.  DOI
               61.      Motta F, Crowner JR, Kalbaugh CA, et al. Outcomes and complications after fenestrated-branched endovascular aortic repair. J Vasc
                   Surg 2019;70:15-22.  DOI
               62.      Oderich GS, Tenorio ER, Mendes BC, et al. Midterm outcomes of a prospective, nonrandomized study to evaluate endovascular repair
                   of complex aortic aneurysms using fenestrated-branched endografts. Ann Surg 2021;274:491-9.  DOI
               63.      Oikonomou K, Kasprzak P, Katsargyris A, Marques De Marino P, Pfister K, Verhoeven ELG. Mid-term results of fenestrated/
                   branched stent grafting to treat post-dissection thoraco-abdominal aneurysms. Eur J Vasc Endovasc Surg 2019;57:102-9.  DOI
                   PubMed
               64.      Law Y, Tsilimparis N, Rohlffs F, et al. Fenestrated or branched endovascular aortic repair for postdissection thoracoabdominal aortic
                   aneurysm. J Vasc Surg 2019;70:404-12.  DOI
               65.      Zettervall SL, Tenorio ER, Schanzer A, et al; U. S. Fenestrated and Branched Aortic Research Consortium. Secondary interventions
                   after fenestrated/branched aneurysm repairs are common and nondetrimental to long-term survival. J Vasc Surg 2022;75:1530-8.e4.
                   DOI  PubMed
               66.      Chait J, Tenorio ER, Hofer JM, DeMartino RR, Oderich GS, Mendes BC. Five-year outcomes of physician-modified endografts for
                   repair of complex abdominal and thoracoabdominal aortic aneurysms. J Vasc Surg 2023;77:374-85.e4.  DOI  PubMed
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