About: A hemodynamical study of image-based 1D and 3D models of the hepatic portal vein network     Goto   Sponge   NotDistinct   Permalink

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  • The main objective of the present study is to quantify the hemodynamic differences between the 3D and 1D blood flow models in two hepatic portal vein networks of various complexity. The numerical simulations of Newtonian blood flow in the 3D and 1D venous networks, which were reconstructed from CT scans provided by the courtesy of University Hospital Pilsen, are carried out for average physiological boundary conditions coupled with the 3-element Windkessel model approximating the flow resistance of the downstream vascular bed.
  • The main objective of the present study is to quantify the hemodynamic differences between the 3D and 1D blood flow models in two hepatic portal vein networks of various complexity. The numerical simulations of Newtonian blood flow in the 3D and 1D venous networks, which were reconstructed from CT scans provided by the courtesy of University Hospital Pilsen, are carried out for average physiological boundary conditions coupled with the 3-element Windkessel model approximating the flow resistance of the downstream vascular bed. (en)
Title
  • A hemodynamical study of image-based 1D and 3D models of the hepatic portal vein network
  • A hemodynamical study of image-based 1D and 3D models of the hepatic portal vein network (en)
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  • A hemodynamical study of image-based 1D and 3D models of the hepatic portal vein network
  • A hemodynamical study of image-based 1D and 3D models of the hepatic portal vein network (en)
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  • RIV/49777513:23520/13:43919726!RIV14-MZ0-23520___
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  • 58647
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  • RIV/49777513:23520/13:43919726
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  • blood flow, hepatic portal vein, finite volume method, stabilised variation of the projection method, Windkessel model (en)
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  • [E2BA5EA9B7FE]
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  • Bublík, Ondřej
  • Jonášová, Alena
  • Vimmr, Jan
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  • 23520
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