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Pregled bibliografske jedinice broj: 257553

Blood Flow in Compliant Arteries: An Effective Viscoelastic Reduced Model, Numerics, and Experimental Validation


Čanić, Sunčica; Hartley, Craig J.; Rosenstrauch, Doreen; Tambača, Josip; Guidoboni, Giovanna; Mikelić, Andro
Blood Flow in Compliant Arteries: An Effective Viscoelastic Reduced Model, Numerics, and Experimental Validation // Annals of Biomedical Engineering, 34 (2006), 4; 575-592 (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 257553 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Blood Flow in Compliant Arteries: An Effective Viscoelastic Reduced Model, Numerics, and Experimental Validation

Autori
Čanić, Sunčica ; Hartley, Craig J. ; Rosenstrauch, Doreen ; Tambača, Josip ; Guidoboni, Giovanna ; Mikelić, Andro

Izvornik
Annals of Biomedical Engineering (0090-6964) 34 (2006), 4; 575-592

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
blood flow modeling; viscoelasticity of arterial walls; fluidstructure interaction

Sažetak
The focus of this work is on modeling blood flow in medium-to-large systemic arteries assuming cylindrical geometry, axially symmetric flow, and viscoelasticity of arterial walls. The aim was to develop a reduced model that would capture certain physical phenomena that have been neglected in the derivation of the standard axially symmetric one-dimensional models, while at the same time keeping the numerical simulations fast and simple, utilizing one-dimensional algorithms. The viscous Navier - Stokes equations were used to describe the flow and the linearly viscoelastic membrane equations to model the mechanical properties of arterial walls. Using asymptotic and homogenization theory, a novel closed, "one-and-a-half dimensional" model was obtained. In contrast with the standard one-dimensional model, the new model captures: (1) the viscous dissipation of the fluid, (2) the viscoelastic nature of the blood flow - vessel wall interaction, (3) the hysteresis loop in the viscoelastic arterial walls dynamics, and (4) two-dimensional flow effects to the leading-order accuracy. A numerical solver based on the 1D-Finite Element Method was developed and the numerical simulations were compared with the ultrasound imaging and Doppler flow loop measurements. Less than 3% of difference in the velocity and less than 1% of difference in the maximum diameter was detected, showing excellent agreement between the model and the experiment.

Izvorni jezik
Engleski

Znanstvena područja
Matematika



POVEZANOST RADA


Projekti:
0037103

Ustanove:
Prirodoslovno-matematički fakultet, Matematički odjel, Zagreb


Citiraj ovu publikaciju:

Čanić, Sunčica; Hartley, Craig J.; Rosenstrauch, Doreen; Tambača, Josip; Guidoboni, Giovanna; Mikelić, Andro
Blood Flow in Compliant Arteries: An Effective Viscoelastic Reduced Model, Numerics, and Experimental Validation // Annals of Biomedical Engineering, 34 (2006), 4; 575-592 (međunarodna recenzija, članak, znanstveni)
Čanić, S., Hartley, C., Rosenstrauch, D., Tambača, J., Guidoboni, G. & Mikelić, A. (2006) Blood Flow in Compliant Arteries: An Effective Viscoelastic Reduced Model, Numerics, and Experimental Validation. Annals of Biomedical Engineering, 34 (4), 575-592.
@article{article, author = {\v{C}ani\'{c}, Sun\v{c}ica and Hartley, Craig J. and Rosenstrauch, Doreen and Tamba\v{c}a, Josip and Guidoboni, Giovanna and Mikeli\'{c}, Andro}, year = {2006}, pages = {575-592}, keywords = {blood flow modeling, viscoelasticity of arterial walls, fluidstructure interaction}, journal = {Annals of Biomedical Engineering}, volume = {34}, number = {4}, issn = {0090-6964}, title = {Blood Flow in Compliant Arteries: An Effective Viscoelastic Reduced Model, Numerics, and Experimental Validation}, keyword = {blood flow modeling, viscoelasticity of arterial walls, fluidstructure interaction} }
@article{article, author = {\v{C}ani\'{c}, Sun\v{c}ica and Hartley, Craig J. and Rosenstrauch, Doreen and Tamba\v{c}a, Josip and Guidoboni, Giovanna and Mikeli\'{c}, Andro}, year = {2006}, pages = {575-592}, keywords = {blood flow modeling, viscoelasticity of arterial walls, fluidstructure interaction}, journal = {Annals of Biomedical Engineering}, volume = {34}, number = {4}, issn = {0090-6964}, title = {Blood Flow in Compliant Arteries: An Effective Viscoelastic Reduced Model, Numerics, and Experimental Validation}, keyword = {blood flow modeling, viscoelasticity of arterial walls, fluidstructure interaction} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus
  • MEDLINE





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