[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"trial:NCT02089607":3,"trial-entities:NCT02089607":462,"trial-summary:NCT02089607":469},{"id":4,"nct_id":4,"org_study_id":5,"brief_title":6,"official_title":7,"overall_status":8,"completion_date":9,"status_verified_date":10,"last_update_date":11,"start_date":12,"sponsor_name":13,"lead_sponsor_class":14,"has_dmc":15,"brief_summary":16,"detailed_description":17,"conditions":18,"keywords":23,"study_type":26,"primary_purpose":27,"phases":28,"enrollment_info":30,"interventions":33,"primary_outcomes":47,"secondary_outcomes":55,"sex":64,"minimum_age":65,"maximum_age":66,"healthy_volunteers":67,"eligibility_criteria":68,"std_ages":102,"locations":105,"central_contacts":141,"overall_officials":145,"references":147,"see_also_links":461},"NCT02089607","H-56531","CAAAs, TAAAs, Aortic Arch Aneurysms or Dissections With Fenestrated\u002FBranched Stent Graft","Clinical Outcomes and Quality of Life Measures in Patients Treated for Complex Abdominal, Thoracoabdominal and Aortic Arch Aneurysms or Dissections With Fenestrated and Branched Stent Grafts","RECRUITING","2032-05","2026-08","2026-08-27","2014-03","Gustavo S Oderich","OTHER",true,"The purpose of this study is to gather safety and effectiveness of the Zenith t-Branch and customized physician-specified stent-graft with a combination of fenestrations and\u002For branches to repair aortic aneurysm.","This is a traditional device feasibility study intended to generate preliminary safety and efficacy information that may be used to plan an appropriate future study, or to inform further product development.\n\nSubjects will have been diagnosed with a bulge or aneurysm in their aortic arch and or abdominal aorta, which is the blood vessel in the abdomen (belly) that supplies blood to most of the lower body including major organs and the legs.\n\nThe Zenith t-Branch and physician-specified fenestrated and branched endovascular graft is a tubular graft made of polyester fabric sewn to stainless steel stents that keep the graft open. As an aneurysm expands, the walls become weak and may rupture, causing a major loss of blood with a high risk of death and other serious complications. To avoid this risk the aneurysm will be repaired by putting a graft inside the aneurysm. The graft will be inserted through arteries in the groin (called endovascular repair). This procedure uses catheters that go inside the blood vessel to place a stent-graft above and below the aneurysm.\n\nThe graft includes 1 to 5 small holes (fenestrations) or cuffs (side branches). These small holes or branches are the investigational part of this research study. The arteries to the liver, intestine, and kidneys will have a stent (small tubular stainless steel structures) to help keep the arteries open and aligned with the fenestrations or branches. The Zenith t-Branch and physician-specified fenestrated and branched endovascular graft will be referred to as the Zenith Fenestrated-Branched System.",[19,20,21,22],"Complex Abdominal Aortic Aneurysm","Thoracoabdominal Aortic Aneurysm","Aortic Arch Aneurysm","Aortic Arch Dissection",[24,25],"aneurysm","aortic aneurysm","INTERVENTIONAL","TREATMENT",[29],"NA",{"count":31,"type":32},760,"ESTIMATED",[34,43],{"type":35,"name":36,"description":37,"armGroupLabels":38,"otherNames":40},"DEVICE","CAAA and TAAA Arm","The Zenith Fenestrated-Branched System is a tubular graft made of polyester fabric sewn to stainless steel stents that keep the graft open. The graft will be inserted through arteries in the leg (called endovascular repair). This procedure uses catheters that go inside the blood vessel to place a stent graft above and below the aneurysm. The graft includes 1 to 5 small holes (fenestrations) or cuffs (side branches). One or more than one of the study devices including the Zenith® Fenestrated AAA Endovascular Graft, Zenith® t-Branch Endovascular Graft, Patient-Specific Thoracoabdominal Graft, Patient-Specific Distal Bifurcated Component, and Zenith® Branch Endovascular Graft-Iliac Bifurcation will be implanted. The arteries to the liver, intestine, and kidneys will have a stent (small tubular stainless steel structures) to help keep the arteries open and aligned with the fenestrations or branches.",[39],"Complex Abdominal (CAAA) and Thoracoabdominal Aortic Aneurysm (TAAA) Arm",[41,42],"Endovascular stent","Stent-graft",{"type":35,"name":44,"description":45,"armGroupLabels":46},"Aortic Arch Aneurysm Arm","The Zenith® Arch Branch Endovascular Graft includes the main aortic arch portion and one to three cuffs (side branches) that allow the graft to be located in the aortic arch. The number of cuffs is decided based on the anatomy of your aneurysm. The arteries in the aortic arch are the innominate artery (Zone 0), left common carotid artery (Zone 1) and the left subclavian artery (Zone 2). These arteries supply the right arm and right side of the brain, the left side of the brain and the left arm, respectively. The main aortic endovascular graft will be connected into the innominate artery, left common carotid artery and left subclavian artery using additional stents into the branch vessels.",[44],[48,52],{"measure":49,"description":50,"timeFrame":51},"Number of subjects who have died at 30 days post treatment","Deaths 30 days after treatment","30 days post treatment",{"measure":53,"description":54,"timeFrame":51},"Number of subjects who experience a Major Adverse Event at 30 days post treatment","A Major Adverse Event includes any of the following: bowel ischemia, myocardial infarction (heart attack), paraplegia, renal failure, respiratory failure, stroke, or blood loss greater than 1000 ml.",[56,60],{"measure":57,"description":58,"timeFrame":59},"Percentage of subjects who achieve treatment success","Treatment success is defined by a composite endpoint, which includes all the following criteria: 1) technical success, defined as successful delivery and deployment of the custom-made endovascular graft with preservation of those branch vessels intended to be preserved; 2) freedom from type I or III endoleak; 3) freedom from stent-graft migration; 4) freedom from aneurysm enlargement \\>5 mm; 5) freedom from aneurysm rupture or conversion to open repair.","12 months post treatment",{"measure":61,"description":62,"timeFrame":63},"Mean Quality of Life Measure at Various Time Points","Subjects complete the Short-Form General Health Survey (SF-36) form which consists of an 11 question survey that is divided into 2 parts: physical and emotional. The scale scores range from 0 to 100, with (0 = worst imaginable, 100 = best imaginable).","Pre-procedure, 30 days, 6 months, 1 year, 2 years, 3 years, 4 years, 5 years","ALL","18 Years",null,false,{"inclusion":69,"exclusion":80,"raw_text":101},[70,71,72,73,74,75,76,77,78,79],"Thoracoabdominal aortic aneurysm with a diameter ≥ 5.5 cm or 2 times the normal aortic diameter.","Aneurysm with a history of growth ≥ 0.5 cm per year.","Saccular aneurysms deemed at significant risk for rupture based upon physician interpretation.","Presence of concomitant thoracoabdominal and aortic arch aneurysm meeting one of the above-mentioned criteria.","Presence of thoracoabdominal aortic aneurysm meeting one of the above-mentioned criteria with unilateral or bilateral common iliac artery aneurysm with diameter ≥ 3.0-cm or saccular morphology with no suitable landing zone proximal to iliac bifurcation.","Proximal aortic fixation zone: a. Native aorta or surgical graft; b. Diameter: 20-42mm; c. Proximal neck length ≥ 20mm; d. Ascending aortic length ≥50mm; e. Must occur distal to coronary arteries and any coronary artery bypass grafts that are considered patent and necessary for proper cardiac perfusion","Distal aortic fixation zone:; a. Native aorta or surgical graft; b. Diameter: 20-42mm; c. Distal neck length ≥20mm","In the setting of an aortic dissection the following criteria must exist: a. Access into the true lumen from the groin and at least one supra-aortic trunk vessel; b. A sealing zone in the target aorta (or surgical graft) that is proximal to the primary dissection, such that a stent-graft would be anticipated to seal off the dissection lumen; c. A sealing zone in the target supra-aortic trunk vessels that is distal to the dissection, anticipated to seal off the dissection lumen, or surgically created; d. A true lumen size large enough to deploy the device and still gain access into the target branches","In the setting of more distal disease: a. The repair may be coupled with a thoracoabdominal branched device, infrarenal device, and\u002For internal iliac branch device.","Iliac anatomy must allow for the delivery of the arch branch device which is loaded within a 20F-24F sheath. Thus the iliac requirements are no different than the standard thoracic protocol. Conduits to the iliac vessels or aorta may be used if deemed necessary.",[81,82,83,84,85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100],"Less than 18 years of age","Unwilling to comply with the follow-up schedule","Inability or refusal to give informed consent by the patient or a legally authorized representative","Pregnant or breastfeeding","Life expectancy \\\u003C 2 years","Prior open surgical or interventional procedure within 30 days of the anticipated date of the fenestrated-branched procedure, with the exception of planned staged procedures to provide access for repair (e.g. staged iliac conduit, cervical debranching, elephant trunk repair), to facilitate the procedure by allowing open revascularization of a target artery not amenable to revascularization with the investigational device, such as an internal iliac artery, subclavian artery or visceral artery with early bifurcation, tortuosity or occlusive disease preventing successful placement of alignment side stents.","Participation in another investigational clinical or device trial, with the exception of participation in another investigational endovascular stent-graft protocol, percutaneous aortic valve protocol, or concomitant clinical trials designed to evaluate medical therapy strategies to reduce perioperative risk during fenestrated-branched endovascular repair, including risks of renal dysfunction, contrast-induced nephropathy, neurologic, spinal cord or cardiac complications, and\u002For use of advanced imaging to reduce radiation exposure during implantation of these devices. Participation in investigational device trials not encompassed by the IDE protocol should be performed remotely from the fenestrated procedure (\\> 30 days). Examples include remote (\\>30 days) participation in a thoracic, abdominal or iliac branch device trial, or participation in a percutaneous aortic valve trial. Participation in medical therapy trial or advanced imaging trial designed to improve peri-operative outcomes or to reduce radiation exposure of fenestrated-branched endografts may be concurrent with the IDE study. Examples include therapy directed to reduce rates of spinal cord injury, stroke and contrast-induced nephropathy associated with implantation of fenestrated-branched stent-grafts or advanced imaging trials designed to reduce radiation exposure during repair.","Patients with ruptured aortic aneurysms requiring urgent or emergent repair, with the exception of patients with contained, stable ruptures with anatomy suitable for an off-the-shelf design.","Known sensitivities or allergies to stainless steel, nitinol, polyester, solder (tin, silver), polypropylene, PTFE, urethane or gold","History of anaphylactic reaction to contrast material that cannot be adequately pre-medicated","Leaking or ruptured aneurysm associated with hypotension","Uncorrectable coagulopathy","Mycotic aneurysm or patients with evidence of active systemic infection.","History of connective tissue disorder (e.g vascular Ehlers Danlos, Marfans syndrome), with the exception of those patients who had prior open surgical aortic replacement, where a surgical graft would serve as landing zone for the investigational stent-graft, those who are deemed prohibitive risk for open surgical repair or connective tissue disorders with no effect of vascular system (e.g non-vascular forms of Ehlers Danlos).","Body habitus that would inhibit X-ray visualization of the aorta and its branches.","Inadequate femoral or iliac access compatible with the required delivery systems.","Inability to perform a temporary or permanent open surgical or endovascular iliac conduit for patients with inadequate femoral\u002Filiac access.","Absence of a non-aneurysmal aortic segment in the distal thoracic aorta above the diaphragmatic hiatus with: a. A diameter measured outer wall to outer wall of no greater than 42mm and no less than 21 mm; b. Parallel aortic wall with \\\u003C20% diameter change and without significant calcification and\u002For thrombus in the selected area of seal zone","Visceral vessel anatomy not compatible with Zenith t-Branch or patient-specific stent-graft due to excessive occlusive disease or small size not amenable to stent graft placement","Unsuitable distal iliac artery fixation site and anatomy for iliac limb extension or iliac branch device: a. Common iliac artery fixation site diameter, measured outer wall to outer wall on a sectional image (CT) \\\u003C8.0 mm with inability to perform open surgical conduit ; b. Iliac artery diameter, measured outer wall to outer wall on a sectional image (CT) \\>20 mm at distal fixation site, with inability to perform open internal iliac artery revascularization or iliac branch stent graft ; c. Non-aneurysmal external liac artery distal fixation site \\\u003C10 mm in length ; d. Non-aneurysmal internal iliac artery main trunk or branch segment with length \\\u003C10mm or with inner wall diameter \\\u003C4 or \\>14mm; e. Unsuitable anatomy due to inability to preserve at least one hypogastric artery","General Inclusion Criteria:\n\n* Thoracoabdominal aortic aneurysm with a diameter ≥ 5.5 cm or 2 times the normal aortic diameter.\n* Aneurysm with a history of growth ≥ 0.5 cm per year.\n* Saccular aneurysms deemed at significant risk for rupture based upon physician interpretation.\n* Presence of concomitant thoracoabdominal and aortic arch aneurysm meeting one of the above-mentioned criteria.\n* Presence of thoracoabdominal aortic aneurysm meeting one of the above-mentioned criteria with unilateral or bilateral common iliac artery aneurysm with diameter ≥ 3.0-cm or saccular morphology with no suitable landing zone proximal to iliac bifurcation.\n\nGeneral Exclusion Criteria:\n\n* Less than 18 years of age\n* Unwilling to comply with the follow-up schedule\n* Inability or refusal to give informed consent by the patient or a legally authorized representative\n* Pregnant or breastfeeding\n* Life expectancy \\\u003C 2 years\n* Prior open surgical or interventional procedure within 30 days of the anticipated date of the fenestrated-branched procedure, with the exception of planned staged procedures to provide access for repair (e.g. staged iliac conduit, cervical debranching, elephant trunk repair), to facilitate the procedure by allowing open revascularization of a target artery not amenable to revascularization with the investigational device, such as an internal iliac artery, subclavian artery or visceral artery with early bifurcation, tortuosity or occlusive disease preventing successful placement of alignment side stents.\n* Participation in another investigational clinical or device trial, with the exception of participation in another investigational endovascular stent-graft protocol, percutaneous aortic valve protocol, or concomitant clinical trials designed to evaluate medical therapy strategies to reduce perioperative risk during fenestrated-branched endovascular repair, including risks of renal dysfunction, contrast-induced nephropathy, neurologic, spinal cord or cardiac complications, and\u002For use of advanced imaging to reduce radiation exposure during implantation of these devices. Participation in investigational device trials not encompassed by the IDE protocol should be performed remotely from the fenestrated procedure (\\> 30 days). Examples include remote (\\>30 days) participation in a thoracic, abdominal or iliac branch device trial, or participation in a percutaneous aortic valve trial. Participation in medical therapy trial or advanced imaging trial designed to improve peri-operative outcomes or to reduce radiation exposure of fenestrated-branched endografts may be concurrent with the IDE study. Examples include therapy directed to reduce rates of spinal cord injury, stroke and contrast-induced nephropathy associated with implantation of fenestrated-branched stent-grafts or advanced imaging trials designed to reduce radiation exposure during repair.\n* Patients with ruptured aortic aneurysms requiring urgent or emergent repair, with the exception of patients with contained, stable ruptures with anatomy suitable for an off-the-shelf design.\n\nMedical Exclusion Criteria:\n\n* Known sensitivities or allergies to stainless steel, nitinol, polyester, solder (tin, silver), polypropylene, PTFE, urethane or gold\n* History of anaphylactic reaction to contrast material that cannot be adequately pre-medicated\n* Leaking or ruptured aneurysm associated with hypotension\n* Uncorrectable coagulopathy\n* Mycotic aneurysm or patients with evidence of active systemic infection.\n* History of connective tissue disorder (e.g vascular Ehlers Danlos, Marfans syndrome), with the exception of those patients who had prior open surgical aortic replacement, where a surgical graft would serve as landing zone for the investigational stent-graft, those who are deemed prohibitive risk for open surgical repair or connective tissue disorders with no effect of vascular system (e.g non-vascular forms of Ehlers Danlos).\n* Body habitus that would inhibit X-ray visualization of the aorta and its branches.\n\nAnatomical Exclusion Criteria:\n\n* Inadequate femoral or iliac access compatible with the required delivery systems.\n* Inability to perform a temporary or permanent open surgical or endovascular iliac conduit for patients with inadequate femoral\u002Filiac access.\n* Absence of a non-aneurysmal aortic segment in the distal thoracic aorta above the diaphragmatic hiatus with: a. A diameter measured outer wall to outer wall of no greater than 42mm and no less than 21 mm; b. Parallel aortic wall with \\\u003C20% diameter change and without significant calcification and\u002For thrombus in the selected area of seal zone\n* Visceral vessel anatomy not compatible with Zenith t-Branch or patient-specific stent-graft due to excessive occlusive disease or small size not amenable to stent graft placement\n* Unsuitable distal iliac artery fixation site and anatomy for iliac limb extension or iliac branch device: a. Common iliac artery fixation site diameter, measured outer wall to outer wall on a sectional image (CT) \\\u003C8.0 mm with inability to perform open surgical conduit ; b. Iliac artery diameter, measured outer wall to outer wall on a sectional image (CT) \\>20 mm at distal fixation site, with inability to perform open internal iliac artery revascularization or iliac branch stent graft ; c. Non-aneurysmal external liac artery distal fixation site \\\u003C10 mm in length ; d. Non-aneurysmal internal iliac artery main trunk or branch segment with length \\\u003C10mm or with inner wall diameter \\\u003C4 or \\>14mm; e. Unsuitable anatomy due to inability to preserve at least one hypogastric artery\n\nAdditional anatomical inclusion criteria for aortic arch devices:\n\n* Proximal aortic fixation zone: a. Native aorta or surgical graft; b. Diameter: 20-42mm; c. Proximal neck length ≥ 20mm; d. Ascending aortic length ≥50mm; e. Must occur distal to coronary arteries and any coronary artery bypass grafts that are considered patent and necessary for proper cardiac perfusion\n* Distal aortic fixation zone:; a. Native aorta or surgical graft; b. Diameter: 20-42mm; c. Distal neck length ≥20mm\n* Supra-aortic trunk (brachiocephalic) vessels: a. Although the prosthesis will typically have two branches, modifications to the design will allow for a single branch, three branches or combination of branch and scallop if a customized version is required. Thus, it is generally planned that at least one extra-anatomic bypass graft will be done in conjunction (or in a staged fashion) with the procedure, unless three branches are planned. The two vessels incorporated into the endograft repair would most commonly be the innominate artery and left common carotid artery. However, the innominate artery may be coupled with the left subclavian artery in the setting of a bovine arch whereby the flow to the left carotid would come from a left subclavian to carotid bypass. Similarly, the left carotid and subclavian artery may be branched, or simply one vessel branched should specific anatomic limitations exist. In such a situation, multiple extra-anatomic bypasses may be necessary. A design with a single subclavian retrograde branch and double scallop to the left carotid artery may be used to extent the landing zone to Zone 1. Finally, a design with two antegrade inner branches for the innominate and left common carotid, and one retrograde inner branch for the left subclavian artery may be used in select cases. Thus the inclusion criteria are defined for each artery, yet any combination of arteries may be used for a repair: Innominate artery (Native vessel or surgical graft, Diameter: 8-22mm, Length of sealing zone ≥10mm, Acceptable tortuosity); Left (or right) common carotid artery (Native vessel or surgical graft, Diameter 6-16mm, Length of sealing zone ≥10mm, Acceptable tortuosity); Left (or right) common carotid artery (Native vessel or surgical graft, Diameter: 5-20mm, Length of sealing zone ≥10mm, Acceptable tortuosity).\n* In the setting of an aortic dissection the following criteria must exist: a. Access into the true lumen from the groin and at least one supra-aortic trunk vessel; b. A sealing zone in the target aorta (or surgical graft) that is proximal to the primary dissection, such that a stent-graft would be anticipated to seal off the dissection lumen; c. A sealing zone in the target supra-aortic trunk vessels that is distal to the dissection, anticipated to seal off the dissection lumen, or surgically created; d. A true lumen size large enough to deploy the device and still gain access into the target branches\n* In the setting of more distal disease: a. The repair may be coupled with a thoracoabdominal branched device, infrarenal device, and\u002For internal iliac branch device.\n* Iliac anatomy must allow for the delivery of the arch branch device which is loaded within a 20F-24F sheath. Thus the iliac requirements are no different than the standard thoracic protocol. Conduits to the iliac vessels or aorta may be used if deemed necessary.",[103,104],"ADULT","OLDER_ADULT",[106,116,137],{"facility":107,"status":108,"city":109,"state":110,"zip":111,"country":112,"geoPoint":113},"Mayo Clinic","ACTIVE_NOT_RECRUITING","Rochester","Minnesota","55905","United States",{"lat":114,"lon":115},44.02163,-92.4699,{"facility":117,"status":8,"city":118,"state":119,"zip":120,"country":112,"contacts":121,"geoPoint":134},"Baylor College of Medicine","Houston","Texas","77030",[122,127,131],{"name":123,"role":124,"phone":125,"email":126},"Andrea C Martinez, BS","CONTACT","713-798-6835","andrea.martinez@bcm.edu",{"name":128,"role":124,"phone":129,"email":130},"Ying Huang, MD, PhD","832-355-9034","Ying.Huang@bcm.edu",{"name":132,"role":133},"Gustavo S. Oderich, MD","PRINCIPAL_INVESTIGATOR",{"lat":135,"lon":136},29.76328,-95.36327,{"facility":138,"status":108,"city":118,"state":119,"zip":139,"country":112,"geoPoint":140},"University of Texas Health Science Center at Houston","77089",{"lat":135,"lon":136},[142,143],{"name":123,"role":124,"phone":125,"email":126},{"name":128,"role":124,"phone":144,"email":130},"832-355-4033",[146],{"name":132,"affiliation":117,"role":133},[148,152,155,158,161,164,167,170,173,176,179,182,185,188,191,194,197,200,203,206,209,212,215,218,221,224,227,230,233,236,239,242,245,248,251,254,257,260,263,266,269,272,275,278,281,284,287,290,293,296,299,302,305,308,311,314,317,320,323,326,329,332,335,338,341,344,347,350,353,356,359,362,365,368,371,374,377,380,383,386,389,392,395,398,401,404,407,410,413,416,419,422,425,428,431,434,437,440,443,446,449,452,455,458],{"pmid":149,"type":150,"citation":151},"31882316","RESULT","Rhee R, Oderich G, Hertault A, Tenorio E, Shih M, Honari S, Jacob T, Haulon S. Multicenter experience in translumbar type II endoleak treatment in the hybrid room with needle trajectory planning and fusion guidance. J Vasc Surg. 2020 Sep;72(3):1043-1049. doi: 10.1016\u002Fj.jvs.2019.10.076. Epub 2019 Dec 25.",{"pmid":153,"type":150,"citation":154},"41211656","Lima GB, Huang Y, Ruiter Kanamori L, Tenorio ER, Schmid BP, Maximus S, Saqib N, Macedo TA, Mendes BC, Oderich GS. Comparison of Bare Metal vs Covered Proximal Stent Fixation During Fenestrated Endovascular Aortic Repair of Complex Abdominal Aortic Aneurysms. J Endovasc Ther. 2025 Nov 10:15266028251388749. doi: 10.1177\u002F15266028251388749. Online ahead of print.",{"pmid":156,"type":150,"citation":157},"41748036","Finnesgard EJ, Simons JP, Beck AW, Eagleton MJ, Farber MA, Gasper WJ, Lee WA, Oderich GS, Schneider DB, Sweet MP, Timaran CH, Schanzer A; United States Aortic Research Consortium. Residual aneurysm behavior is associated with aortic outcomes after fenestrated and branched endovascular aortic repair. J Vasc Surg. 2026 Jul;84(1):4-12.e2. doi: 10.1016\u002Fj.jvs.2026.02.021. Epub 2026 Feb 24.",{"pmid":159,"type":150,"citation":160},"41664301","Baghbani A, Savadi S, Sulzer TAL, Tenorio ER, Mesnard T, Vacirca A, Mendes BC, Saqib NU, Maximus S, Huang Y, Oderich GS. Familial History of Aortic Disease Does Not Affect Outcomes of Fenestrated-Branched Endovascular Aortic Repair in Patients With Complex Aortic Aneurysms. J Endovasc Ther. 2026 Feb 9:15266028261417156. doi: 10.1177\u002F15266028261417156. Online ahead of print.",{"pmid":162,"type":150,"citation":163},"40683396","Ruiter Kanamori L, Dias-Neto M, Porras-Colon J, Lima GB, Huang Y, Figueroa A, Han SM, Mendes BC, Macedo TA, Saqib N, Maximus S, Timaran CH, Oderich GS. Treatment and outcomes of type IIIb endoleaks affecting the main fenestrated-branched aortic stent graft component among patients treated for complex abdominal and thoracoabdominal aortic aneurysms. J Vasc Surg. 2025 Dec;82(6):1935-1944. doi: 10.1016\u002Fj.jvs.2025.06.112. Epub 2025 Jul 17.",{"pmid":165,"type":150,"citation":166},"41625970","Schmid BP, Kanamori LR, Abdelhalim MA, Vanmaele A, Lima GB, Babocs D, Nair HR, Huang Y, Modarai B, Oderich GS. Early and late outcomes of patient-specific endografts with retrograde outer branches for complex aortic aneurysms involving cranially oriented target vessels. J Vasc Surg Cases Innov Tech. 2025 Nov 7;12(1):102004. doi: 10.1016\u002Fj.jvscit.2025.102004. eCollection 2026 Feb.",{"pmid":168,"type":150,"citation":169},"41015897","Sulzer TAL, Macedo TA, Mesnard T, Tenorio ER, Baumgardt Barbosa Lima G, Hatz H, Hesley GK, Lekah A, Tallarita T, Huang Y, Mendes BC, Oderich GS. Prospective Assessment of Changes in Target Vessel Peak Systolic Velocity Measurements After Fenestrated-Branched Endovascular Aortic Repair. J Endovasc Ther. 2025 Sep 28:15266028251368250. doi: 10.1177\u002F15266028251368250. Online ahead of print.",{"pmid":171,"type":150,"citation":172},"40720611","Huang Y, Colglazier J, Pochettino A, Kalra M, Bower TC, Greason KL, Mendes BC, Tenorio ER, Gloviczki P, Harmsen WS, Oderich GS. Treatment Trends and Outcomes of Endovascular versus Open Thoracoabdominal Aortic Aneurysm Repair - A Single-center Comparative Cohort Study. Ann Surg. 2025 Jul 25. doi: 10.1097\u002FSLA.0000000000006848. Online ahead of print.",{"pmid":174,"type":150,"citation":175},"39914760","Sickels AD, Novak Z, Schanzer A, Farber MA, Sweet MP, Oderich GS, Schneider DB, Eagleton MJ, Timaran C, Gasper WJ, Lee WA, Beck AW. Evolving practices of spinal drain use for branch\u002Ffenestrated endovascular aortic repair patients in the United States Aortic Research Consortium. J Vasc Surg. 2025 Jun;81(6):1266-1277.e1. doi: 10.1016\u002Fj.jvs.2025.01.216. Epub 2025 Feb 4.",{"pmid":177,"type":150,"citation":178},"39914755","Finnesgard EJ, Jones DW, Beck AW, Eagleton MJ, Farber MA, Gasper WJ, Lee WA, Oderich GS, Schneider DB, Sweet MP, Timaran CH, Schanzer A; United States Aortic Research Consortium. Trends and outcomes over time with fenestrated and branched endovascular aortic repair in the United States Aortic Research Consortium. J Vasc Surg. 2025 Jun;81(6):1235-1243. doi: 10.1016\u002Fj.jvs.2025.01.213. Epub 2025 Feb 4.",{"pmid":180,"type":150,"citation":181},"40409435","Babocs D, Kanamori LR, Schmid BP, Tenorio E, Maximus S, Mendes BC, Macedo TA, Huang Y, Oderich GS. Increasing clinical experience and changes in practice protocols improved outcomes of fenestrated branched endovascular repair of complex aortic aneurysms. J Vasc Surg. 2025 Oct;82(4):1156-1167.e2. doi: 10.1016\u002Fj.jvs.2025.05.031. Epub 2025 May 21.",{"pmid":183,"type":150,"citation":184},"40814684","Ribe L, Ruiter Kanamori L, Schmid BP, Macedo TA, Mendes BC, Maximus S, Huang Y, Nasser F, Oderich GS. Outcomes of fenestrated-branched endovascular aortic repair of thoracoabdominal aortic aneurysms in patients with heritable thoracic aortic diseases. JTCVS Tech. 2025 May 9;32:10-19. doi: 10.1016\u002Fj.xjtc.2025.04.025. eCollection 2025 Aug.",{"pmid":186,"type":150,"citation":187},"40306594","Vanmaele A, Ruiter Kanamori L, Vacirca A, Babocs D, Mesnard T, Maximus S, Huang Y, Feng CMJ, Huynh J, Oderich GS. Direct absorbed and equivalent dose of radiation to the eyes in patients and operators during fenestrated and branched endovascular aortic repair. J Vasc Surg. 2025 Aug;82(2):646-654. doi: 10.1016\u002Fj.jvs.2025.04.033. Epub 2025 Apr 28.",{"pmid":189,"type":150,"citation":190},"39571886","Ruiter Kanamori L, Vacirca A, Babocs D, Tenorio ER, Lima GBB, Mendes BC, Huang Y, Maximus S, Estrera A, Oderich GS. Implementation of a Comprehensive Endovascular Aortic Programme and Maintenance of Clinical Excellence during Fenestrated Branched Endovascular Aortic Repair in Two Centres. Eur J Vasc Endovasc Surg. 2025 Mar;69(3):407-414. doi: 10.1016\u002Fj.ejvs.2024.11.014. Epub 2024 Nov 19.",{"pmid":192,"type":150,"citation":193},"38796031","Fan EY, Schanzer A, Beck AW, Eagleton MJ, Farber MA, Gasper WJ, Lee WA, Oderich GS, Parodi FE, Schneider DB, Sweet MP, Timaran CH, Simons JP; US Aortic Research Consortium. Practice patterns of antiplatelet and anticoagulant therapy after fenestrated\u002Fbranched endovascular aortic repair. J Vasc Surg. 2024 Oct;80(4):968-978.e3. doi: 10.1016\u002Fj.jvs.2024.05.041. Epub 2024 May 23.",{"pmid":195,"type":150,"citation":196},"38301871","Sulzer TAL, de Bruin JL, Rastogi V, Boer GJ, Mesnard T, Fioole B, Rijn MJV, Schermerhorn ML, Oderich GS, Verhagen HJM. 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Learning curve of fenestrated and branched endovascular aortic repair for pararenal and thoracoabdominal aneurysms. J Vasc Surg. 2020 Aug;72(2):423-434.e1. doi: 10.1016\u002Fj.jvs.2019.09.046. Epub 2020 Feb 17.",{"pmid":312,"type":150,"citation":313},"31787461","D'Oria M, Oderich GS, Tenorio ER, Karkkainen JM, Mendes BC, Macedo TA, Vrtiska T, DeMartino RR. Natural history of isolated type II endoleaks in patients treated by fenestrated-branched endovascular repair for pararenal and thoracoabdominal aortic aneurysms. J Vasc Surg. 2020 Jul;72(1):44-54. doi: 10.1016\u002Fj.jvs.2019.09.041. Epub 2019 Nov 29.",{"pmid":315,"type":150,"citation":316},"32197996","Karkkainen JM, Tenorio ER, Pather K, Mendes BC, Macedo TA, Wigham J, Diderrich A, Oderich GS. Outcomes of Small Renal Artery Targets in Patients Treated by Fenestrated-Branched Endovascular Aortic Repair. Eur J Vasc Endovasc Surg. 2020 Jun;59(6):910-917. doi: 10.1016\u002Fj.ejvs.2020.02.015. 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Safety and Efficacy of Totally Percutaneous Femoral Access for Fenestrated-Branched Endovascular Aortic Repair of Pararenal-Thoracoabdominal Aortic Aneurysms. Cardiovasc Intervent Radiol. 2020 Apr;43(4):547-555. doi: 10.1007\u002Fs00270-020-02414-8. Epub 2020 Jan 15.",{"pmid":327,"type":150,"citation":328},"31718987","Karkkainen JM, Tenorio ER, Oksala N, Macedo TA, Sen I, Mendes BC, DeMartino RR, Jacobs MJ, Mees B, Oderich GS. Pre-operative Psoas Muscle Size Combined With Radiodensity Predicts Mid-Term Survival and Quality of Life After Fenestrated-Branched Endovascular Aortic Repair. Eur J Vasc Endovasc Surg. 2020 Jan;59(1):31-39. doi: 10.1016\u002Fj.ejvs.2019.06.021. Epub 2019 Nov 9.",{"pmid":330,"type":150,"citation":331},"30583902","Oderich GS, Ribeiro MS, Sandri GA, Tenorio ER, Hofer JM, Mendes BC, Chini J, Cha S. Evolution from physician-modified to company-manufactured fenestrated-branched endografts to treat pararenal and thoracoabdominal aortic aneurysms. J Vasc Surg. 2019 Jul;70(1):31-42.e7. doi: 10.1016\u002Fj.jvs.2018.09.063. Epub 2018 Dec 21.",{"pmid":333,"type":150,"citation":334},"30714570","Karkkainen JM, Sandri GA, Tenorio ER, Macedo TA, Hofer J, Gloviczki P, Cha S, Oderich GS. Prospective assessment of health-related quality of life after endovascular repair of pararenal and thoracoabdominal aortic aneurysms using fenestrated-branched endografts. J Vasc Surg. 2019 May;69(5):1356-1366.e6. doi: 10.1016\u002Fj.jvs.2018.07.060. Epub 2018 Oct 24.",{"pmid":336,"type":150,"citation":337},"30527938","Tenorio ER, Oderich GS, Sandri GA, Ozbek P, Karkkainen JM, Macedo TA, Vrtiska T, Cha S. Impact of onlay fusion and cone beam computed tomography on radiation exposure and technical assessment of fenestrated-branched endovascular aortic repair. J Vasc Surg. 2019 Apr;69(4):1045-1058.e3. doi: 10.1016\u002Fj.jvs.2018.07.040. Epub 2018 Dec 4.",{"pmid":339,"type":150,"citation":340},"30154012","Sandri GA, Oderich GS, Tenorio ER, Ribeiro MS, Reis de Souza L, Cha SS, Macedo TA, Textor SC. Impact of aortic wall thrombus on late changes in renal function among patients treated by fenestrated-branched endografts. J Vasc Surg. 2019 Mar;69(3):651-660.e4. doi: 10.1016\u002Fj.jvs.2018.05.243. Epub 2018 Aug 25.",{"pmid":342,"type":150,"citation":343},"28596039","Ribeiro M, Oderich GS, Macedo T, Vrtiska TJ, Hofer J, Chini J, Mendes B, Cha S. Assessment of aortic wall thrombus predicts outcomes of endovascular repair of complex aortic aneurysms using fenestrated and branched endografts. J Vasc Surg. 2017 Nov;66(5):1321-1333. doi: 10.1016\u002Fj.jvs.2017.03.428. Epub 2017 Jun 7.",{"pmid":345,"type":150,"citation":346},"27565586","Jain V, Banga P, Vallabhaneni R, Eagleton M, Oderich G, Farber MA. Endovascular treatment of aneurysms using fenestrated-branched endografts with distal inverted iliac limbs. J Vasc Surg. 2016 Sep;64(3):600-4. doi: 10.1016\u002Fj.jvs.2016.02.058.",{"pmid":348,"type":150,"citation":349},"37313951","Chait J, Tenorio ER, Kawajiri H, Lima GBB, Cirillo-Penn NC, Bagameri G, Pochettino A, DeMartino RR, Oderich GS, Mendes BC. Mid-Term Outcomes of \"Complete Aortic Repair\": Surgical or Endovascular Total Arch Replacement With Thoracoabdominal Fenestrated-Branched Endovascular Aortic Repair. J Endovasc Ther. 2025 Apr;32(2):503-512. doi: 10.1177\u002F15266028231181211. Epub 2023 Jun 14.",{"pmid":351,"type":150,"citation":352},"39884565","Cirillo-Penn NC, MacArthur TA, Tenorio ER, DeMartino RR, Macedo TA, Oderich GS, Mendes BC. Outcomes of patients treated with double-wide scallop vs fenestrations for celiac artery incorporation during repair of complex abdominal aortic aneurysms. J Vasc Surg. 2025 May;81(5):1033-1039. doi: 10.1016\u002Fj.jvs.2025.01.194. Epub 2025 Jan 28.",{"pmid":354,"type":150,"citation":355},"40054790","Vacirca A, Mesnard T, Huang Y, Mendes BC, Jakimowicz T, Schneider DB, Haulon S, Sobocinski J, Beck AW, Schanzer A, Farber MA, Timaran C, Kahlberg A, Kolbel T, Gasper WJ, Mees BME, Gargiulo M, Dias NV, Woongchae AL, Sweet MP, Mani K, Eagleton M, Pedro LM, Verhagen H, Yeung KK, Tsilimparis N, Resch T, Bertoglio L, Ferreira E, Khashram M, Sulzer T, Dias-Neto M, Tenorio ER, Kanamori LR, Jama K, Parodi E, Gomes V, Colon JP, Chiesa R, Panuccio G, Schurink GW, Lemmens C, Gallitto E, Faggioli G, Karelis A, Wanhainen A, Habib M, Gouveia E Melo R, Kappe KO, Mariko van Knippenberg SE, Tran B, Crawford S, Panagrosso M, Melloni A, Bonardelli S, Garcia R, Ribeiro T, Gormley S, Maximus S, Oderich GS; International Multicenter Aortic Research Group. Predictors of failure to rescue after fenestrated-branched endovascular aortic repair of thoracoabdominal aortic aneurysms. J Vasc Surg. 2025 Jul;82(1):32-42.e3. doi: 10.1016\u002Fj.jvs.2025.02.032. Epub 2025 Mar 5.",{"pmid":357,"type":150,"citation":358},"39904414","Ruiter Kanamori L, Tenorio E, Babocs D, Lima GB, Mendes B, Macedo TA, Maximus S, Huang Y, Oderich GS. Clinical outcomes and quality of life measures among 5-year survivors of fenestrated-branched endovascular aortic repair. J Vasc Surg. 2025 Jun;81(6):1254-1265. doi: 10.1016\u002Fj.jvs.2025.01.210. Epub 2025 Feb 2.",{"pmid":360,"type":150,"citation":361},"38768834","Rodrigues DVS, Chait J, Cirillo-Penn NC, DeMartino RR, Vierkant RA, Oderich GS, Mendes BC. Trends in hospitalization of patients undergoing endovascular treatment of thoracoabdominal aortic aneurysms based on cerebrospinal fluid drainage strategy. J Vasc Surg. 2024 Oct;80(4):988-995.e1. doi: 10.1016\u002Fj.jvs.2024.05.032. Epub 2024 May 19.",{"pmid":363,"type":150,"citation":364},"38825213","Mesnard T, Sulzer TAL, Kanamori LR, Babocs D, Vacirca A, Baghbani A, Savadi S, Tenorio ER, Mirza A, Saqib N, Mendes B, Macedo T, Verhagen HJM, Huang Y, Oderich GS. Aneurysm sac shrinkage at 1 year after fenestrated-branched endovascular aortic repair of complex aortic aneurysms offers mid-term survival advantage. J Vasc Surg. 2024 Oct;80(4):958-967.e3. doi: 10.1016\u002Fj.jvs.2024.05.054. Epub 2024 May 31.",{"pmid":366,"type":150,"citation":367},"39074740","Ruiter Kanamori L, Tenorio ER, Babocs D, Savadi S, Baghbani A, Huang Y, Figueroa A, Tanenbaum M, Costa Filho JE, Baig M, Macedo TA, Timaran CH, Oderich GS. Indications, safety, and effectiveness of transcatheter electrosurgical septotomy during endovascular repair of aortic dissections. J Vasc Surg. 2024 Nov;80(5):1396-1406. doi: 10.1016\u002Fj.jvs.2024.07.089. Epub 2024 Jul 27.",{"pmid":369,"type":150,"citation":370},"39584778","Huang Y, Colglazier J, Mendes BC, Pochettino A, Kalra M, Greason KL, Tenorio ER, Harmsen WS, Oderich GS. Target Artery Outcomes Following Endovascular Versus Open Surgical Repair of Thoracoabdominal Aortic Aneurysms: A Single-center Comparative Study. Ann Surg. 2026 Jun 1;283(6):1097-1105. doi: 10.1097\u002FSLA.0000000000006594. Epub 2024 Nov 25.",{"pmid":372,"type":150,"citation":373},"37956958","Steadman JA, Tenorio ER, Chait J, Vierkant RA, DeMartino RR, Oderich GS, Mendes BC. Preoperative predictors of nonhome discharge after fenestrated-branched endovascular repair of complex abdominal and thoracoabdominal aortic aneurysms. J Vasc Surg. 2024 Mar;79(3):469-477.e3. doi: 10.1016\u002Fj.jvs.2023.11.015. Epub 2023 Nov 11.",{"pmid":375,"type":150,"citation":376},"38141739","Mesnard T, Vacirca A, Baghbani A, Sulzer TAL, Savadi S, Kanamori LR, Tenorio ER, Mirza A, Saqib N, Mendes BC, Huang Y, Oderich GS. Prospective evaluation of upper extremity access and total transfemoral approach during fenestrated and branched endovascular repair. J Vasc Surg. 2024 May;79(5):1013-1023.e3. doi: 10.1016\u002Fj.jvs.2023.12.033. Epub 2023 Dec 21.",{"pmid":378,"type":150,"citation":379},"38897392","Tanenbaum MT, Figueroa AV, Kanamori LR, Costa Filho JE, Soto Gonzalez M, Sulzer T, Mesnard T, Huang Y, Baig MS, Oderich GS, Timaran CH. Early experience with patient-specific unibody bifurcated fenestrated-branched devices for complex endovascular aortic aneurysm repair. J Vasc Surg. 2024 Nov;80(5):1361-1370. doi: 10.1016\u002Fj.jvs.2024.06.020. Epub 2024 Jun 17.",{"pmid":381,"type":150,"citation":382},"38989575","Oderich GS, Huang Y, Harmsen WS, Tenorio ER, Schanzer A, Timaran CH, Schneider DB, Mendes BC, Eagleton MJ, Farber MA, Gasper WJ, Beck AW, Sweet MP, Lee WA; United States Aortic Research Consortium. Early and Late Aortic-Related Mortality and Rupture After Fenestrated-Branched Endovascular Aortic Repair of Thoracoabdominal Aortic Aneurysms: A Prospective Multicenter Cohort Study. Circulation. 2024 Oct 22;150(17):1343-1353. doi: 10.1161\u002FCIRCULATIONAHA.123.068234. Epub 2024 Jul 11.",{"pmid":384,"type":150,"citation":385},"36948277","Tenorio ER, Schanzer A, Timaran CH, Schneider DB, Mendes BC, Eagleton MJ, Farber MA, Parodi FE, Gasper WJ, Beck AW, Sweet MP, Zettervall SL, Huang Y, Oderich GS; 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 Jul;78(1):10-28.e3. doi: 10.1016\u002Fj.jvs.2023.03.025. Epub 2023 Mar 21.",{"pmid":387,"type":150,"citation":388},"37453587","Sulzer TAL, Macedo TA, Strissel N, Hesley GK, Lekah A, Tallarita T, Dias-Neto M, Huang Y, Tenorio ER, Vacirca A, Mesnard T, Baghbani A, Savadi S, de Bruin JL, Verhagen HJM, Mendes B, Oderich GS. Changes in renal-mesenteric duplex ultrasound velocities after fenestrated and branched endovascular aortic aneurysm repair. J Vasc Surg. 2023 Nov;78(5):1162-1169.e2. doi: 10.1016\u002Fj.jvs.2023.06.106. Epub 2023 Jul 14.",{"pmid":390,"type":150,"citation":391},"36319711","Wong J, Tenorio ER, Lima G, Dias-Neto M, Baghbani-Oskouei A, Mendes B, Kratzberg J, Ocasio L, Macedo TA, Oderich GS. Early Feasibility of Endovascular Repair of Distal Aortic Arch Aneurysms Using Patient-Specific Single Retrograde Left Subclavian Artery Branch Stent Graft. Cardiovasc Intervent Radiol. 2023 Feb;46(2):249-254. doi: 10.1007\u002Fs00270-022-03304-x. Epub 2022 Nov 1.",{"pmid":393,"type":150,"citation":394},"35801701","Tenorio ER, Mirza AK, Lima GBB, Marcondes GB, Wong J, Mendes BC, Saqib N, Khan S, Macedo TA, Oderich GS. Characterization of Secondary Interventions After Fenestrated-branched Endovascular Repair of Complex Aortic Aneurysms and Its Effect on Quality of Life and Patient Survival. Ann Surg. 2023 Jul 1;278(1):140-147. doi: 10.1097\u002FSLA.0000000000005454. Epub 2022 Jul 8.",{"pmid":396,"type":150,"citation":397},"36372375","Rogers RT, Lemmens CC, Tenorio ER, Schurink GWH, DeMartino RR, Oderich GS, Mees BME, Mendes BC. Fenestrated\u002Fbranched endovascular aortic repair using unilateral femoral access in patients with iliac occlusive disease. J Vasc Surg. 2023 Mar;77(3):722-730. doi: 10.1016\u002Fj.jvs.2022.10.049. Epub 2022 Nov 11.",{"pmid":399,"type":150,"citation":400},"36343871","Dias-Neto M, Marcondes G, Tenorio ER, Barbosa Lima GB, Baghbani A, Vacirca A, Mendes BC, Saqib N, Mirza AK, Oderich GS. Outcomes of iliofemoral conduits during fenestrated-branched endovascular repair of complex abdominal and thoracoabdominal aortic aneurysms. J Vasc Surg. 2023 Mar;77(3):712-721.e1. doi: 10.1016\u002Fj.jvs.2022.10.050. Epub 2022 Nov 5.",{"pmid":402,"type":150,"citation":403},"37080442","Vacirca A, Wong J, Baghbani A, Tenorio ER, Huang Y, Mirza A, Saqib N, Sulzer T, Mesnard T, Mendes BC, Oderich GS. Outcomes of fenestrated-branched endovascular aortic repair in patients with or without prior history of abdominal endovascular or open surgical repair. J Vasc Surg. 2023 Aug;78(2):278-288.e3. doi: 10.1016\u002Fj.jvs.2023.04.001. Epub 2023 Apr 19.",{"pmid":405,"type":150,"citation":406},"35697310","Paajanen P, Karkkainen JM, Tenorio ER, Mendes BC, Oderich GS. Effect of patient frailty status on outcomes of fenestrated-branched endovascular aortic repair for complex abdominal and thoracoabdominal aortic aneurysms. J Vasc Surg. 2022 Nov;76(5):1170-1179.e2. doi: 10.1016\u002Fj.jvs.2022.05.008. Epub 2022 Jun 11.",{"pmid":408,"type":150,"citation":409},"35810953","Dias-Neto M, Tenorio ER, Lima GBB, Baghbani A, Saqib N, Mendes BC, Mirza AK, Oderich GS. Outcomes of low- and standard-profile fenestrated and branched stent grafts for treatment of complex abdominal and thoracoabdominal aortic aneurysms. J Vasc Surg. 2022 Nov;76(5):1160-1169.e1. doi: 10.1016\u002Fj.jvs.2022.05.028. Epub 2022 Jul 8.",{"pmid":411,"type":150,"citation":412},"35181519","Chait J, Tenorio ER, Mendes BC, Barbosa Lima GB, Marcondes GB, Wong J, Macedo TA, De Martino RR, Oderich GS. Impact of gap distance between fenestration and aortic wall on target artery instability following fenestrated-branched endovascular aortic repair. J Vasc Surg. 2022 Jul;76(1):79-87.e4. doi: 10.1016\u002Fj.jvs.2022.01.135. Epub 2022 Feb 16.",{"pmid":414,"type":150,"citation":415},"33417331","Tenorio ER, Ribeiro MS, Banga PV, Mendes BC, Karkkainen J, DeMartino RR, Hoffman EM, Oderich GS. Prospective Assessment of a Protocol Using Neuromonitoring, Early Limb Reperfusion, and Selective Temporary Aneurysm Sac Perfusion to Prevent Spinal Cord Injury During Fenestrated-branched Endovascular Aortic Repair. Ann Surg. 2022 Dec 1;276(6):e1028-e1034. doi: 10.1097\u002FSLA.0000000000004624. Epub 2021 Jan 7.",{"pmid":417,"type":150,"citation":418},"32861863","Squizzato F, Oderich GS, Tenorio ER, Mendes BC, DeMartino RR. Effect of celiac axis compression on target vessel-related outcomes during fenestrated-branched endovascular aortic repair. J Vasc Surg. 2021 Apr;73(4):1167-1177.e1. doi: 10.1016\u002Fj.jvs.2020.07.092. Epub 2020 Aug 27.",{"pmid":420,"type":150,"citation":421},"33548434","Squizzato F, Oderich GS, Balachandran P, Tenorio ER, Mendes BC, De Martino RR. Effect of aortic angulation on the outcomes of fenestrated-branched endovascular aortic repair. J Vasc Surg. 2021 Aug;74(2):372-382.e3. doi: 10.1016\u002Fj.jvs.2021.01.027. Epub 2021 Feb 4.",{"pmid":423,"type":150,"citation":424},"34708266","Marcondes GB, Tenorio ER, Baumgardt G, Mendes B, Oderich GS. Evaluation of Safety of Overhead Upper Extremity Positioning During Fenestrated-Branched Endovascular Repair of Thoracoabdominal Aortic Aneurysms. Cardiovasc Intervent Radiol. 2021 Dec;44(12):1895-1902. doi: 10.1007\u002Fs00270-021-02992-1. Epub 2021 Oct 27.",{"pmid":426,"type":150,"citation":427},"33227467","Banga P, Oderich GS, Farber M, Reis de Souza L, Tenorio ER, Timaran C, Schneider DB, Baumgardt Barbosa Lima G, Barreira Marcondes G, Timaran D. Impact of Number of Vessels Targeted on Outcomes of Fenestrated-Branched Endovascular Repair for Complex Abdominal Aortic Aneurysms. Ann Vasc Surg. 2021 Apr;72:98-105. doi: 10.1016\u002Fj.avsg.2020.09.063. Epub 2020 Nov 21.",{"pmid":429,"type":150,"citation":430},"33340697","Cajas-Monson L, D'Oria M, Tenorio E, Mendes BC, Oderich GS, DeMartino RR. Effect of renal function on patient survival after endovascular thoracoabdominal and pararenal aortic aneurysm repair. J Vasc Surg. 2021 Jul;74(1):13-19. doi: 10.1016\u002Fj.jvs.2020.11.040. Epub 2020 Dec 16.",{"pmid":432,"type":150,"citation":433},"33002587","Karkkainen JM, Oderich GS, Tenorio ER, Pather K, Oksala N, Macedo TA, Vrtiska T, Mees B, Jacobs MJ. Psoas muscle area and attenuation are highly predictive of complications and mortality after complex endovascular aortic repair. J Vasc Surg. 2021 Apr;73(4):1178-1188.e1. doi: 10.1016\u002Fj.jvs.2020.08.141. Epub 2020 Sep 28.",{"pmid":435,"type":150,"citation":436},"31980247","Karkkainen JM, Tenorio ER, Jain A, Mendes BC, Macedo TA, Pather K, Gloviczki P, Oderich GS. Outcomes of target vessel endoleaks after fenestrated-branched endovascular aortic repair. J Vasc Surg. 2020 Aug;72(2):445-455. doi: 10.1016\u002Fj.jvs.2019.09.055. Epub 2020 Jan 21.",{"pmid":438,"type":150,"citation":439},"32864718","Sen I, Tenorio ER, Mirza AK, Karkkainen JM, Mendes BC, DeMartino RR, Cha S, Oderich GS. Effect of Blood Loss and Transfusion Requirements on Clinical Outcomes of Fenestrated-Branched Endovascular Aortic Repair. Cardiovasc Intervent Radiol. 2020 Nov;43(11):1600-1607. doi: 10.1007\u002Fs00270-020-02573-8. Epub 2020 Aug 30.",{"pmid":441,"type":150,"citation":442},"31611106","Tenorio ER, Karkkainen JM, Mendes BC, DeMartino RR, Macedo TA, Diderrich A, Hofer J, Oderich GS. Outcomes of directional branches using self-expandable or balloon-expandable stent grafts during endovascular repair of thoracoabdominal aortic aneurysms. J Vasc Surg. 2020 May;71(5):1489-1502.e6. doi: 10.1016\u002Fj.jvs.2019.07.079. Epub 2019 Oct 11.",{"pmid":444,"type":150,"citation":445},"31455986","Chini J, Mendes BC, Tenorio ER, Ribeiro MS, Sandri GA, Cha S, Hofer J, Oderich GS. Preloaded Catheters and Guide-Wire Systems to Facilitate Catheterization During Fenestrated and Branched Endovascular Aortic Repair. Cardiovasc Intervent Radiol. 2019 Dec;42(12):1678-1686. doi: 10.1007\u002Fs00270-019-02322-6. Epub 2019 Aug 27.",{"pmid":447,"type":150,"citation":448},"27866781","Oderich GS, Ribeiro M, Reis de Souza L, Hofer J, Wigham J, Cha S. Endovascular repair of thoracoabdominal aortic aneurysms using fenestrated and branched endografts. J Thorac Cardiovasc Surg. 2017 Feb;153(2):S32-S41.e7. doi: 10.1016\u002Fj.jtcvs.2016.10.008. Epub 2016 Oct 22.",{"pmid":450,"type":150,"citation":451},"27986479","Oderich GS, Ribeiro M, Hofer J, Wigham J, Cha S, Chini J, Macedo TA, Gloviczki P. Prospective, nonrandomized study to evaluate endovascular repair of pararenal and thoracoabdominal aortic aneurysms using fenestrated-branched endografts based on supraceliac sealing zones. J Vasc Surg. 2017 May;65(5):1249-1259.e10. doi: 10.1016\u002Fj.jvs.2016.09.038. Epub 2016 Dec 13.",{"pmid":453,"type":150,"citation":454},"26637837","Banga PV, Oderich GS, Reis de Souza L, Hofer J, Cazares Gonzalez ML, Pulido JN, Cha S, Gloviczki P. Neuromonitoring, Cerebrospinal Fluid Drainage, and Selective Use of Iliofemoral Conduits to Minimize Risk of Spinal Cord Injury During Complex Endovascular Aortic Repair. J Endovasc Ther. 2016 Feb;23(1):139-49. doi: 10.1177\u002F1526602815620898. Epub 2015 Dec 4.",{"pmid":456,"type":150,"citation":457},"27109801","Mendes BC, Oderich GS. Endovascular repair of thoracoabdominal aortic aneurysm using the off-the-shelf multibranched t-Branch stent graft. J Vasc Surg. 2016 May;63(5):1394-1399.e2. doi: 10.1016\u002Fj.jvs.2016.02.021.",{"pmid":459,"type":150,"citation":460},"26372191","de Souza LR, Oderich GS, Banga PV, Hofer JM, Wigham JR, Cha S, Gloviczki P. Outcomes of total percutaneous endovascular aortic repair for thoracic, fenestrated, and branched endografts. J Vasc Surg. 2015 Dec;62(6):1442-9.e3. doi: 10.1016\u002Fj.jvs.2015.07.072. Epub 2015 Sep 12.",[],{"nct_id":4,"conditions":463,"biomarkers":468},[464,465,466,467],"Abdominal Aortic Aneurysm","Aneurysm of aortic arch","Dissection of aortic arch","Thoracoabdominal aortic aneurysm",[],{"nct_id":4,"found":15,"summary":470,"prompt_version":480},{"design":471,"status":472,"heading":473,"summary":474,"follow_up":475,"word_count":476,"commitments":477,"compensation":478,"drugs_mentioned":479},"This is an interventional study planning to enroll 760 participants. It is a feasibility study designed to gather preliminary safety and effectiveness information.","completed","Zenith Stent Graft for Aortic Aneurysms and Dissections","This study is testing the safety and effectiveness of the Zenith Fenestrated-Branched System and the Zenith Arch Branch Endovascular Graft. These devices are tubular grafts made of fabric and metal stents, designed to repair bulges (aneurysms) or tears (dissections) in your aorta, the main blood vessel in your body. The grafts are inserted through arteries in your leg or groin. The study is looking at how many people die or experience major problems within 30 days after treatment. You may be able to join if you have a large aortic aneurysm or one that is growing quickly. The study aims to gather initial information for future research or product development.","Participants will be followed for at least 30 days after treatment to assess death and major adverse events.",110,"Not specified in the trial record.","Not stated in the trial record.",[],"v2"]