Literature DB >> 15797594

Multiscale modeling of the cardiovascular system: application to the study of pulmonary and coronary perfusions in the univentricular circulation.

Katia Laganà1, Rossella Balossino, Francesco Migliavacca, Giancarlo Pennati, Edward L Bove, Marc R de Leval, Gabriele Dubini.   

Abstract

The objective of this study is to compare the coronary and pulmonary blood flow dynamics resulting from two configurations of systemic-to-pulmonary artery shunts currently utilized during the Norwood procedure: the central (CS) and modified Blalock Taussig (MBTS) shunts. A lumped parameter model of the neonatal cardiovascular circulation and detailed 3-D models of the shunt based on the finite volume method were constructed. Shunt sizes of 3, 3.5 and 4 mm were considered. A multiscale approach was adopted to prescribe appropriate and realistic boundary conditions for the 3-D models of the Norwood circulation. Results showed that the average shunt flow rate is higher for the CS option than for the MBTS and that pulmonary flow increases with shunt size for both options. Cardiac output is higher for the CS option for all shunt sizes. Flow distribution between the left and the right pulmonary arteries is not completely balanced, although for the CS option the discrepancy is low (50-51% of the pulmonary flow to the right lung) while for the MBTS it is more pronounced with larger shunt sizes (51-54% to the left lung). The CS option favors perfusion to the right lung while the MBTS favors the left. In the CS option, a smaller percentage of aortic flow is distributed to the coronary circulation, while that percentage rises for the MBTS. These findings may have important implications for coronary blood flow and ventricular function.

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Year:  2005        PMID: 15797594     DOI: 10.1016/j.jbiomech.2004.05.027

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  29 in total

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2.  Development of A Physical Windkessel Module to Re-Create In-Vivo Vascular Flow Impedance for In-Vitro Experiments.

Authors:  Ethan O Kung; Charles A Taylor
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Journal:  Ann Biomed Eng       Date:  2012-04-27       Impact factor: 3.934

Review 4.  Patient-specific modeling of cardiovascular mechanics.

Authors:  C A Taylor; C A Figueroa
Journal:  Annu Rev Biomed Eng       Date:  2009       Impact factor: 9.590

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

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Journal:  J Biomech       Date:  2008-05-07       Impact factor: 2.712

6.  A computational physiology approach to personalized treatment models: the beneficial effects of slow breathing on the human cardiovascular system.

Authors:  Maria Fonoberova; Igor Mezić; Jennifer F Buckman; Vladimir A Fonoberov; Adriana Mezić; Evgeny G Vaschillo; Eun-Young Mun; Bronya Vaschillo; Marsha E Bates
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7.  Effect of stenosis eccentricity on the functionality of coronary bifurcation lesions-a numerical study.

Authors:  Catherine Pagiatakis; Jean-Claude Tardif; Philippe L L'Allier; Rosaire Mongrain
Journal:  Med Biol Eng Comput       Date:  2017-05-13       Impact factor: 2.602

8.  Roadmap for cardiovascular circulation model.

Authors:  Soroush Safaei; Christopher P Bradley; Vinod Suresh; Kumar Mithraratne; Alexandre Muller; Harvey Ho; David Ladd; Leif R Hellevik; Stig W Omholt; J Geoffrey Chase; Lucas O Müller; Sansuke M Watanabe; Pablo J Blanco; Bernard de Bono; Peter J Hunter
Journal:  J Physiol       Date:  2016-09-29       Impact factor: 5.182

9.  Cannulation strategy for aortic arch reconstruction using deep hypothermic circulatory arrest.

Authors:  Diane de Zélicourt; Philsub Jung; Marc Horner; Kerem Pekkan; Kirk R Kanter; Ajit P Yoganathan
Journal:  Ann Thorac Surg       Date:  2012-05-18       Impact factor: 4.330

10.  The assisted bidirectional Glenn: a novel surgical approach for first-stage single-ventricle heart palliation.

Authors:  Mahdi Esmaily-Moghadam; Tain-Yen Hsia; Alison L Marsden
Journal:  J Thorac Cardiovasc Surg       Date:  2014-10-15       Impact factor: 5.209

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