Literature DB >> 10870901

Scaling approach to study the changes through the gestation of human fetal cardiac and circulatory behaviors.

G Pennati1, R Fumero.   

Abstract

During human gestation, fetal body size increases considerably and important transformations occur to hemodynamics of the cardiovascular system of the fetus. Vascular compliances and resistances as well as the cardiac function show important changes. In order to investigate these modifications, a mathematical approach based on scaling techniques was developed. Vascular and cardiac parameters of the human fetus were related by allometric equations to the anatomical dimensions of vessels that, in turn, depend on the fetal body weight and the gestational age. A scaling factor (b) was identified for each parameter under study: vascular resistances and flow inertances decrease with gestational age (b= -0.33 for flow inertances) whereas vascular compliances remarkably increase (b= 1.33). Scaling factors were also adopted for the fetal cardiac parameters, according to experimental data on the development of fetal myocardium. Parameter values calculated for each week of the last trimester of the fetal gestation, were tested using a mathematical lumped parameter model, previously developed for a human fetus near the term of the gestation. The validation of the scaling method adopted for the parameters was performed by comparing the results of the simulations with a group of data obtained by Doppler velocimetry at different stages of fetal normal gestation. The adopted allometric equations were appropriate in describing the development of the human fetal circulatory system. The ductus venosus, the ductus arteriosus, and the foramen ovale, that conclude their function at the birth moment, as well as the lungs and the brain, do not follow the general growth rate and require different scaling factors.

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Year:  2000        PMID: 10870901     DOI: 10.1114/1.282

Source DB:  PubMed          Journal:  Ann Biomed Eng        ISSN: 0090-6964            Impact factor:   3.934


  10 in total

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2.  In vitro hemodynamic investigation of the embryonic aortic arch at late gestation.

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3.  Mathematical model of flow through the patent ductus arteriosus.

Authors:  Adriana Setchi; A Jonathan Mestel; Jennifer H Siggers; Kim H Parker; Ming Wang Tan; Kangwen Wong
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4.  A computational model of the fetal circulation to quantify blood redistribution in intrauterine growth restriction.

Authors:  Patricia Garcia-Canadilla; Paula A Rudenick; Fatima Crispi; Monica Cruz-Lemini; Georgina Palau; Oscar Camara; Eduard Gratacos; Bart H Bijnens; Bart H Bijens
Journal:  PLoS Comput Biol       Date:  2014-06-12       Impact factor: 4.475

5.  Adaptive responses of cardiac function to fetal postural change as gestational age increases.

Authors:  Woo Jin Kim; Hye Jin Choi; Sun Young Yang; Boo Hae Koo; Ki Hoon Ahn; Geum Joon Cho; Soon Cheol Hong; Min-Jeong Oh; Hai-Joong Kim
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Review 7.  Mending a broken heart: In vitro, in vivo and in silico models of congenital heart disease.

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Review 8.  A review study of fetal circulatory models to develop a digital twin of a fetus in a perinatal life support system.

Authors:  Bettine G van Willigen; M Beatrijs van der Hout-van der Jagt; Wouter Huberts; Frans N van de Vosse
Journal:  Front Pediatr       Date:  2022-09-21       Impact factor: 3.569

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10.  An integrated approach to patient-specific predictive modeling for single ventricle heart palliation.

Authors:  Chiara Corsini; Catriona Baker; Ethan Kung; Silvia Schievano; Gregory Arbia; Alessia Baretta; Giovanni Biglino; Francesco Migliavacca; Gabriele Dubini; Giancarlo Pennati; Alison Marsden; Irene Vignon-Clementel; Andrew Taylor; Tain-Yen Hsia; Adam Dorfman
Journal:  Comput Methods Biomech Biomed Engin       Date:  2013-01-23       Impact factor: 1.763

  10 in total

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