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  •   Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ.
  • Προβολή τεκμηρίου
  •   Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ.
  • Προβολή τεκμηρίου
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Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
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Suture Line Response of End-to-Side Anastomosis: A Stress Concentration Methodology

Thumbnail
Συγγραφέας
Roussis, P. C.; Giannakopoulos, A. E.; Charalambous, H. P.
Ημερομηνία
2015
DOI
10.1007/s13239-014-0206-6
Λέξη-κλειδί
Blood-vessel stress
Stress concentration factors
Suture line blood leaking
Suture line length
Suture tensile force
Blood vessels
Grafting (chemical)
Offshore structures
Stress concentration
Surgery
Tensile forces
Vessel stress
Stresses
anastomosis leakage
arterial wall thickness
artery anastomosis
artery graft
Article
biomedical engineering
blood flow velocity
blood vessel shunt
end to side anastomosis
hemodynamics
human
mathematical computing
mathematical model
mathematical parameters
medical society
methodology
molecular interaction
postoperative period
priority journal
shear stress
stress concentration factor
surface property
surgical technique
suturing method
Εμφάνιση Μεταδεδομένων
Επιτομή
End-to-side vascular anastomosis has a considerable complexity regarding the suturing of the juncture line between the artery and the graft. The present study proposes a stress–concentration methodology for the prediction of the stress distribution at the juncture line, aiming to provide generic expressions describing the response of an end-to-side anastomosis. The proposed methodology is based on general results obtained from the analysis of pipe connections, a topic that has been investigated in recent years in the field of offshore structural engineering. A key aspect for implementing the stress–concentration–factor approach is the recognition that the axial load due to pressure and flow dynamics exerted along the graft axis controls the “hot spots” on the juncture line, which in turn affects the mechanical response of the sutures. Several parameters, identified to influence the suture line response, are introduced in closed-form expressions for the suture line response calculations. The obtained results compare favorably with finite element results published in the literature. The proposed model predicts analytically the suture line response of end-to-side anastomosis, while capturing the influence of and interdependence among the problem parameters. Lower values of the graft radius, the distance between sequential stitches, and the intersecting angle between the artery and the graft are some of the key parameters that reduce the suture line response. The findings of this study are broad in scope and potentially applicable to improving the end-to-side anastomosis technique through improved functionality of the sutures and optimal selection of materials and anastomosis angle. © 2014, Biomedical Engineering Society.
URI
http://hdl.handle.net/11615/32715
Collections
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19674]

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Η δικτυακή πύλη της Ευρωπαϊκής Ένωσης
Ψηφιακή Ελλάδα
ΕΣΠΑ 2007-2013
Με τη συγχρηματοδότηση της Ελλάδας και της Ευρωπαϊκής Ένωσης
htmlmap