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  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
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A computational fluid dynamics modelling of maternal-fetal heat exchange and blood flow in the umbilical cord

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Auteur
Kasiteropoulou D., Topalidou A., Downe S.
Date
2020
Language
en
DOI
10.1371/journal.pone.0231997
Sujet
Article
blood flow velocity
blood pressure
computational fluid dynamics
computer model
entropy
fetal well being
fetus
fetus blood
finite element analysis
heat exchange
heat loss
human
mother fetus relationship
shear flow
thermoregulation
umbilical artery
umbilical cord blood flow
umbilical vein
biological model
computer simulation
female
fetomaternal transfusion
hemodynamics
physiology
pregnancy
pressure
temperature
umbilical cord
vascularization
Blood Flow Velocity
Computer Simulation
Entropy
Female
Hemodynamics
Humans
Maternal-Fetal Exchange
Models, Biological
Pregnancy
Pressure
Temperature
Umbilical Cord
Umbilical Veins
Public Library of Science
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Résumé
Human fetal thermoregulation, maternal-fetal heat exchange, and the role of the umbilical cord in these processes are not well understood. Ethical and technical limitations have restricted current knowledge to animal studies, that do not reflect human morphology. Here, we present the first 3-dimensional computational model of the human umbilical cord with finite element analysis, aiming to compute the maternal-fetal heat exchange. By modelling both the umbilical vein and the two umbilical arteries, we found that the coiled geometry of the umbilical artery, in comparison with the primarily straight umbilical vein, affects blood flow parameters such as velocity, pressure, temperature, shear strain rate and static entropy. Specifically, by enhancing the heat transfer coefficient, we have shown that the helical structure of the umbilical arteries plays a vital role in the temperature drop of the blood, along the arterial length from the fetal end to the placental end. This suggests the importance of the umbilical cord structure in maternal-fetal heat exchange and fetal heat loss, opening the way for future research with modified models and scenarios, as the basis for early detection of potential heat-transfer related complications, and/or assurance of fetal wellbeing. © 2020 Kasiteropoulou et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
URI
http://hdl.handle.net/11615/74572
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  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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