A heterogeneous approach for modelling blood flow in an arterial segment

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Abstract

A differential model of blood flow through an arterial vessel is presented. The flow equations averaged across the wall thickness are in conjunction with the equation of the compliant wall modelled as an elastic axisymmetric membrane. Such one-dimensional model describing the nonlinear fluid-wall interaction is coupled with a six compartment lumped parameter model which accounts for the global circulatory features. The full nonlinear equations are approximated by using a numerical finite difference method on a staggered grid. Some numerical simulations show the characteristics of the wave propagation and the dependence on the relevant parameters.

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Di Carlo, A., Nardinocchi, P., Pontrelli, G., & Teresi, L. (2003). A heterogeneous approach for modelling blood flow in an arterial segment. In Advances in Computational Bioengineering (Vol. 7, pp. 69–78). WITPress. https://doi.org/10.2495/bio030071

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