Background: In January 2015, we created a multidisciplinary Aortic Center with the collaboration of Vascular Surgery, Cardiac Surgery, Interventional Radiology, Anesthesia and Hospital Administration. We report the initial success of creating a Comprehensive Aortic Center.
Methods: All aortic procedures performed from January 1, 2015 until December 31, 2016 were entered into a prospectively collected database and compared with available data for 2014. Primary outcomes included the number of all aortic related procedures, transfer acceptance rate, transfer time, and proportion of elective/emergent referrals.
Results: The Aortic Center included 5 vascular surgeons, 2 cardiac surgeons, and 2 interventional radiologists. Workflow processes were implemented to streamline patient transfers as well as physician and operating room notification. Total aortic volume increased significantly from 162 to 261 patients. This reflected an overall 59% (P = 0.0167) increase in all aorta-related procedures. We had a 65% overall increase in transfer requests with 156% increase in acceptance of referrals and 136% drop in transfer denials (P < 0.0001). Emergent abdominal aortic cases accounted for 17% (n = 45) of our total aortic volume in 2015. The average transfer time from request to arrival decreased from 515 to 352 min, although this change was not statistically significant. We did see a significant increase in the use of air-transfers for aortic patients (P = 0.0041). Factorial analysis showed that time for transfer was affected only by air-transfer use, regardless of the year the patient was transferred. Transfer volume and volume of aortic related procedures remained stable in 2016.
Conclusions: Designation as a comprehensive Aortic Center with implementation of strategic workflow systems and a culture of "no refusal of transfers" resulted in a significant increase in aortic volume for both emergent and elective aortic cases. Case volumes increased for all specialties involved in the center. Improvements in transfer center and emergency medical services communication demonstrated a trend toward more efficient transfer times. These increases and improvements were sustainable for 2 years after this designation.
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http://dx.doi.org/10.1016/j.avsg.2017.08.009 | DOI Listing |
Circulation
January 2025
Department of Anaesthesia and Critical Care, Royal Brompton & Harefield Hospitals, Guy's and St Thomas' National Health Service Foundation Trust, London, United Kingdom (A.R., C.V.).
Int J Surg
January 2025
Department of Cardiovascular Surgery, Xijing Hospital, Xi'an, Shaanxi, China.
Background: The impact of aortic arch (AA) morphology on the management of the procedural details and the clinical outcomes of the transfemoral artery (TF)-transcatheter aortic valve replacement (TAVR) has not been evaluated. The goal of this study was to evaluate the AA morphology of patients who had TF-TAVR using an artificial intelligence algorithm and then to evaluate its predictive value for clinical outcomes.
Materials And Methods: A total of 1480 consecutive patients undergoing TF-TAVR using a new-generation transcatheter heart valve at 12 institutes were included in this retrospective study.
Innovations (Phila)
December 2024
Department of Neurosciences and Rehabilitation, Cardiac Surgery Unit, University of Ferrara, Italy.
Objective: Both the en bloc island technique and the branched graft technique (BGT) present advantages but also limitations in aortic arch surgery. Here is the first presentation of an innovative prosthesis for aortic arch replacement, conceived to overcome the disadvantages of both techniques.
Methods: The novel ISLAND graft is a tubular Dacron or hybrid prosthesis with an additional extended Dacron graft ("bubble") on the superior aspect, for en bloc island graft anastomosis.
Radiol Case Rep
March 2025
Maimonides Medical Center, Brooklyn, NY, USA.
Thoracic aortic pseudoaneurysms are a rare but serious complication of infectious processes, often resulting from mycotic (infectious) aneurysms, occurring when the vessel wall is compromised by an infection, leading to the formation of a pseudoaneurysm [1]. Mycotic aneurysms typically result from bacteremia or fungemia, with common sources being infective endocarditis or other systemic infections. Tuberculosis, though a common infectious disease worldwide, is an unusual cause of aortic pseudoaneurysm formation.
View Article and Find Full Text PDFJ Vasc Surg Cases Innov Tech
April 2025
Division of Vascular and Endovascular Surgery, Department of Surgery, University of Texas Southwestern Medical Center, Dallas, TX.
Adverse iliofemoral anatomy represents a unique challenge for endovascular aortic aneurysm repair (EVAR). This report describes a transaxillary EVAR in a patient with severe iliofemoral occlusive disease and an infrarenal aortic aneurysm. A reversely mounted Gore Excluder graft was advanced and deployed in the infrarenal aorta using the left axillary artery.
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