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Fatigue of textiles used in vascular surgery: Application to carotid endarterectomy

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Autore
Gavardinas I.D., Spyrou L.A., Zervaki A., Spanos K., Giannoukas A.D., Giannakopoulos A.E.
Data
2021
Language
en
DOI
10.1016/j.jmbbm.2020.104121
Soggetto
Diseases
Surgery
Textiles
Atherosclerotic plaque
Carotid endarterectomies
Fatigue performance
Mechanical behavior
Novel applications
Surgical procedures
Traditional materials
Vascular surgery
Fatigue of materials
arteriotomy
Article
calculation
carotid endarterectomy
finite element analysis
follow up
geometry
human
mathematical model
mechanical stress
mechanics
patch angioplasty
priority journal
simulation
vascular surgery
angioplasty
carotid artery
carotid artery disease
surgery
textile
Angioplasty
Carotid Arteries
Carotid Artery Diseases
Endarterectomy, Carotid
Humans
Textiles
Elsevier Ltd
Mostra tutti i dati dell'item
Abstract
Fatigue is a material-based phenomenon playing a significant role in the mechanical behavior of components and structures. Although fatigue has been well studied for traditional materials, such as metals, its underlying mechanisms are not thoroughly understood in novel applications such as the case of textiles used as patches to close the arteriotomy in carotid endarterectomy. The latter is a type of vascular surgery for the treatment of carotid artery disease in which after an arteriotomy and removal of atherosclerotic plaque closure is made with a patch sutured on the artery. Completion of the operation signals the initiation of complex mechanical and hemodynamic phenomena. Fatigue performance of the patch eventually determines the successful outcome of carotid endarterectomy. In this study, we evaluate with a two-fold approach the mechanics of patch angioplasty in carotid endarterectomy. First, an analytical model for the fatigue behavior of textiles is developed, considering the microstructure and geometry of the fabric. Then, the surgical procedure is simulated and a finite element analysis of the endarterectomized and patched carotid artery is employed. Stress fields are calculated, while deformation at the site of patch angioplasty indicates a potential cause for the formation of aneurismal degeneration after the surgery. Such analysis can provide a better understanding in the establishment of follow-up protocols. © 2020 Elsevier Ltd
URI
http://hdl.handle.net/11615/72002
Collections
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19743]

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