Displacement forces (DFs) identify hostile landing zones for stent graft deployment in thoracic endovascular aortic repair (TEVAR). However, their use in TEVAR planning is hampered by the need for time-expensive computational fluid dynamics (CFD). We propose a novel fast-approximate computation of DFs merely exploiting aortic arch anatomy, as derived from the computed tomography (CT) and a measure of central aortic pressure.

Fast Approximate Quantification of Endovascular Stent Graft Displacement Forces in the Bovine Aortic Arch Variant / F. Sturla, A. Caimi, R.M. Romarowski, G. Nano, M. Glauber, A. Redaelli, E. Votta, M.M. Marrocco-Trischitta. - In: JOURNAL OF ENDOVASCULAR THERAPY. - ISSN 1526-6028. - (2022). [Epub ahead of print] [10.1177/15266028221095403]

Fast Approximate Quantification of Endovascular Stent Graft Displacement Forces in the Bovine Aortic Arch Variant

G. Nano;
2022

Abstract

Displacement forces (DFs) identify hostile landing zones for stent graft deployment in thoracic endovascular aortic repair (TEVAR). However, their use in TEVAR planning is hampered by the need for time-expensive computational fluid dynamics (CFD). We propose a novel fast-approximate computation of DFs merely exploiting aortic arch anatomy, as derived from the computed tomography (CT) and a measure of central aortic pressure.
bovine aortic arch variant; computational fluid dynamics; displacement forces; endovascular planning; thoracic aorta endovascular repair
Settore MED/22 - Chirurgia Vascolare
19-mag-2022
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/929505
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