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A computational framework for pharmaco-mechanical interactions in arterial walls using parallel monolithic domain decomposition methods

Authors :
Balzani, Daniel
Heinlein, Alexander
Klawonn, Axel
Knepper, Jascha
Ramesh, Sharan Nurani
Rheinbach, Oliver
Sassmannshausen, Lea
Uhlmann, Klemens
Publication Year :
2023

Abstract

A computational framework is presented to numerically simulate the effects of antihypertensive drugs, in particular calcium channel blockers, on the mechanical response of arterial walls. A stretch-dependent smooth muscle model by Uhlmann and Balzani is modified to describe the interaction of pharmacological drugs and the inhibition of smooth muscle activation. The coupled deformation-diffusion problem is then solved using the finite element software FEDDLib and overlapping Schwarz preconditioners from the Trilinos package FROSch. These preconditioners include highly scalable parallel GDSW (generalized Dryja-Smith-Widlund) and RDSW (reduced GDSW) preconditioners. Simulation results show the expected increase in the lumen diameter of an idealized artery due to the drug-induced reduction of smooth muscle contraction, as well as a decrease in the rate of arterial contraction in the presence of calcium channel blockers. Strong and weak parallel scalability of the resulting computational implementation are also analyzed.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2307.02972
Document Type :
Working Paper