PLoS ONE (Jan 2023)

Modelling of thrombus formation using smoothed particle hydrodynamics method.

  • Alessandra Monteleone,
  • Alessia Viola,
  • Enrico Napoli,
  • Gaetano Burriesci

DOI
https://doi.org/10.1371/journal.pone.0281424
Journal volume & issue
Vol. 18, no. 2
p. e0281424

Abstract

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In this paper a novel model, based on the smoothed particle hydrodynamics (SPH) method, is proposed to simulate thrombus formation. This describes the main phases of the coagulative cascade through the balance of four biochemical species and three type of platelets. SPH particles can switch from fluid to solid phase when specific biochemical and physical conditions are satisfied. The interaction between blood and the forming blood clot is easily handled by an innovative monolithic FSI approach. Fluid-solid coupling is modelled by introducing elastic binds between solid particles, without requiring detention and management of the interface between the two media. The proposed model is able to realistically reproduce the thromboembolic process, as confirmed by the comparison of numerical results with experimental data available in the literature.