Background: Thoracic endovascular aortic repair (TEVAR) involving landing zone 2 can require extra-anatomic debranching (SR-TEVAR) to ensure left subclavian artery perfusion, resulting in increased costs. A single-branch device (Thoracic Branch Endoprosthesis [TBE], WL Gore, Flagstaff, AZ) provides a total endovascular solution. Comparative cost analysis of patients undergoing zone 2 TEVAR requiring left subclavian artery preservation with TBE versus SR-TEVAR is presented.
Methods: A single-center retrospective cost analysis was performed for aortic diseases requiring a zone 2 landing zone (TBE vs. SR-TEVAR) from 2014 to 2019. Facility charges were collected from the universal billing form UB-04 (form CMS 1450).
Results: Twenty-four patients were included in each arm. There were no significant differences in the overall mean procedural charges between the two groups: TBE, $209,736 ($57,761) vs. SR-TEVAR $209,025 ($93,943), = 0.94. TBE resulted in reduced operating room charges ($36,849 [$8750] vs. $48,073 [$10,825], = 0.02) and reduced intensive care unit and telemetry room charges, which did not reach statistical significance ( = 0.23 and 0.12, respectively). Device/implant charges were the primary cost driver in both groups. Charges associated with TBE were significantly higher: $105,525 ($36,137) vs. $51,605 ($31,326), > 0.01.
Conclusions: TBE had similar overall procedural charges despite higher device/implant-related expenses and reduced facility resource utilization (lower operating room, intensive care unit, telemetry, and pharmacy charges).
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http://dx.doi.org/10.1080/08998280.2023.2212585 | DOI Listing |
J Vasc Surg Cases Innov Tech
April 2025
Division of Vascular and Endovascular Surgery, Department of Cardiac, Thoracic, Vascular Sciences and Public Health, University of Padua, Padua, Italy.
This report details the case of an 84-year-old male with an infrarenal abdominal aortic aneurysm and a dilated right common iliac artery eligible for endovascular treatment. A bifurcated stent graft (Medtronic Endurant IIs) was used to treat the aneurysm. To address the concerns of instability of the right iliac limb, four endoanchors (Heli-FX EndoAnchor, Medtronic) were placed at the distal landing zone to provide additional fixation.
View Article and Find Full Text PDFJ Clin Med
December 2024
Department of Cardiovascular Surgery, Sapporo Medical University, Sapporo 060-8556, Japan.
Few clinical studies have reported on physician-modified inner-branched endovascular repair (PMiBEVAR) for aortic arch aneurysm. Herein, we evaluate the outcomes of proximal landing zone 2 PMiBEVAR. This retrospective study analyzed data from six patients who underwent zone 2 PMiBEVAR for aortic arch aneurysms at a single center between October 2021 and June 2024.
View Article and Find Full Text PDFAnn Thorac Surg Short Rep
December 2024
Institute for Integrated Life Skills, LLC, Bermuda Run, North Carolina.
Background: The expanded polytetrafluoroethylene (ePTFE) valved conduit (VC) has been reported for pulmonary valve replacement (PVR). The purpose of this study was to review long-term outcomes of our trileaflet ePTFE VC.
Methods: This multicenter study was performed with institutional review board approval from each institution.
Ann Thorac Surg Short Rep
September 2024
Division of Cardiothoracic Surgery, Emory University School of Medicine, Atlanta, Georgia.
Hybrid repair of complex aortic arch disease typically requires aortic debranching to create a proximal landing zone for completion arch endografting. Despite advances in endograft technology, physician-modified endografting may be required to customize a prosthesis for challenging anatomy. We present a case of a complex distal arch aneurysm after a prior coarctation repair with a pediatric interposition graft several decades earlier, treated with hybrid repair by double transposition for arch debranching and physician-modified arch endografting for complete aneurysm exclusion.
View Article and Find Full Text PDFConserv Biol
January 2025
Marine Science Institute, University of California, Santa Barbara, Santa Barbara, California, USA.
Marine protected areas (MPAs) are widely implemented tools for long-term ocean conservation and resource management. Assessments of MPA performance have largely focused on specific ecosystems individually and have rarely evaluated performance across multiple ecosystems either in an individual MPA or across an MPA network. We evaluated the conservation performance of 59 MPAs in California's large MPA network, which encompasses 4 primary ecosystems (surf zone, kelp forest, shallow reef, deep reef) and 4 bioregions, and identified MPA attributes that best explain performance.
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