-
1
-
-
79960746471
-
Pulse wave propagation in a model human arterial network: assessment of 1-D visco-elastic simulations against in vitro measurements
-
AlastrueyJ, KhirAW, MatthysKS, SegersP, SherwinSJ, VerdonckPR, ParkerKH, PeiróJ. 2011. Pulse wave propagation in a model human arterial network: assessment of 1-D visco-elastic simulations against in vitro measurements. J Biomech. 44:2250–2258.
-
(2011)
J Biomech
, vol.44
, pp. 2250-2258
-
-
Alastruey, J.1
Khir, A.W.2
Matthys, K.S.3
Segers, P.4
Sherwin, S.J.5
Verdonck, P.R.6
Parker, K.H.7
Peiró, J.8
-
2
-
-
0028897125
-
Arterial wall mechanics in conscious dogs: assessment of viscous, inertial, and elastic moduli to characterize aortic wall behavior
-
ArmentanoRL, BarraJG, LevensonJ, SimonA, PichelRH. 1995. Arterial wall mechanics in conscious dogs: assessment of viscous, inertial, and elastic moduli to characterize aortic wall behavior. Circ Res. 76(3):468–478.
-
(1995)
Circ Res
, vol.76
, Issue.3
, pp. 468-478
-
-
Armentano, R.L.1
Barra, J.G.2
Levenson, J.3
Simon, A.4
Pichel, R.H.5
-
3
-
-
0031803932
-
Leg intramuscular pressures during locomotion in humans
-
BallardRE, WatenpaughDE, BreitGA, MurthyG, HolleyDC, HargensAR. 1998. Leg intramuscular pressures during locomotion in humans. J Appl Physiol. 84(6):1976–1981.
-
(1998)
J Appl Physiol
, vol.84
, Issue.6
, pp. 1976-1981
-
-
Ballard, R.E.1
Watenpaugh, D.E.2
Breit, G.A.3
Murthy, G.4
Holley, D.C.5
Hargens, A.R.6
-
4
-
-
0013969986
-
A theory of fluid flow in compliant tubes
-
BarnardACL, HuntWA, TimlakeWP, VarleyE. 1966. A theory of fluid flow in compliant tubes. Biophys J. 6(6):717–724.
-
(1966)
Biophys J
, vol.6
, Issue.6
, pp. 717-724
-
-
Barnard, A.C.L.1
Hunt, W.A.2
Timlake, W.P.3
Varley, E.4
-
5
-
-
84859427471
-
Sequential parameter estimation for fluid–structure problems: application to hemodynamics
-
BertoglioC, MoireauPh, GerbeauJ-F. 2012. Sequential parameter estimation for fluid–structure problems: application to hemodynamics. Int J Numer Method Biomed Eng. 28:434–455.
-
(2012)
Int J Numer Method Biomed Eng
, vol.28
, pp. 434-455
-
-
Bertoglio, C.1
Moireau, P.2
Gerbeau, J.-F.3
-
6
-
-
0032898657
-
Aortic pulse wave velocity as a marker of cardiovascular risk in hypertensive patients
-
BlacherJ, AsmarR, DjaneS, LondonGM, SafarME. 1999. Aortic pulse wave velocity as a marker of cardiovascular risk in hypertensive patients. Hypertension. 33(5):1111–1117.
-
(1999)
Hypertension
, vol.33
, Issue.5
, pp. 1111-1117
-
-
Blacher, J.1
Asmar, R.2
Djane, S.3
London, G.M.4
Safar, M.E.5
-
8
-
-
0007574110
-
Numerical solutions for unsteady gravity-driven flows in collapsible tubes: evolution and roll-wave instability of a steady state
-
BrookBS, FalleSAEG, PedleyTJ. 1999. Numerical solutions for unsteady gravity-driven flows in collapsible tubes: evolution and roll-wave instability of a steady state. J Fluid Mech. 396(1):223–256.
-
(1999)
J Fluid Mech
, vol.396
, Issue.1
, pp. 223-256
-
-
Brook, B.S.1
Falle, S.A.E.G.2
Pedley, T.J.3
-
9
-
-
0036136797
-
A model for time-dependent flow in (giraffe jugular) veins: uniform tube properties
-
BrookBS, PedleyTJ. 2002. A model for time-dependent flow in (giraffe jugular) veins: uniform tube properties. J Biomech. 35(1):95–107.
-
(2002)
J Biomech
, vol.35
, Issue.1
, pp. 95-107
-
-
Brook, B.S.1
Pedley, T.J.2
-
10
-
-
52049084561
-
Finite volume and weno scheme in one-dimensional vascular system modelling
-
CavalliniN, CaleffiV, CosciaV. 2008. Finite volume and weno scheme in one-dimensional vascular system modelling. Comput Math Appl. 56(9):2382–2397.
-
(2008)
Comput Math Appl
, vol.56
, Issue.9
, pp. 2382-2397
-
-
Cavallini, N.1
Caleffi, V.2
Coscia, V.3
-
11
-
-
79952245621
-
Fluid–structure interaction simulation of aortic blood flow
-
CrosettoP, ReymondPh, DeparisS, KontaxakisD, StergiopulosN, QuarteroniA. 2011. Fluid–structure interaction simulation of aortic blood flow. Comput Fluids. 43(1):46–57.
-
(2011)
Comput Fluids
, vol.43
, Issue.1
, pp. 46-57
-
-
Crosetto, P.1
Reymond, P.2
Deparis, S.3
Kontaxakis, D.4
Stergiopulos, N.5
Quarteroni, A.6
-
12
-
-
84876330203
-
A ‘well balanced’ finite volume scheme for blood flow simulation
-
DelestreO, LagréeP-Y. 2012. A ‘well balanced’ finite volume scheme for blood flow simulation. Int J Numer Methods Fluids., 10.1002/fld.3736.
-
(2012)
Int J Numer Methods Fluids
-
-
Delestre, O.1
Lagrée, P.-Y.2
-
13
-
-
55149115679
-
Blood flow in the circle of Willis: modeling and calibration
-
DeVaultK, GremaudPA, NovakV, OlufsenMS, VernieresG, ZhaoP. 2008. Blood flow in the circle of Willis: modeling and calibration. Multiscale Model Simul. 7(2):888–909.
-
(2008)
Multiscale Model Simul
, vol.7
, Issue.2
, pp. 888-909
-
-
DeVault, K.1
Gremaud, P.A.2
Novak, V.3
Olufsen, M.S.4
Vernieres, G.5
Zhao, P.6
-
14
-
-
0035692648
-
Fluid–structure interaction within realistic three-dimensional models of the aneurysmatic aorta as a guidance to assess the risk of rupture of the aneurysm
-
Di MartinoES, GuadagniG, FumeroA, BalleriniG, SpiritoR, BiglioliP, RedaelliA. 2001. Fluid–structure interaction within realistic three-dimensional models of the aneurysmatic aorta as a guidance to assess the risk of rupture of the aneurysm. Med Eng Phys. 23(9):647–655.
-
(2001)
Med Eng Phys
, vol.23
, Issue.9
, pp. 647-655
-
-
Di Martino, E.S.1
Guadagni, G.2
Fumero, A.3
Ballerini, G.4
Spirito, R.5
Biglioli, P.6
Redaelli, A.7
-
15
-
-
0026020877
-
Numerical schemes for unsteady fluid flow through collapsible tubes
-
EladD, KatzD, KimmelE, EinavS. 1991. Numerical schemes for unsteady fluid flow through collapsible tubes. J Biomed Eng. 13(1):10–18.
-
(1991)
J Biomed Eng
, vol.13
, Issue.1
, pp. 10-18
-
-
Elad, D.1
Katz, D.2
Kimmel, E.3
Einav, S.4
-
16
-
-
84859051283
-
Experiments of draining and filling processes in a collapsible tube at high external pressure
-
FlaudP, GuesdonP, FullanaJ-M. 2012. Experiments of draining and filling processes in a collapsible tube at high external pressure. Eur Phys J Appl Phys. 57(3):223–256.
-
(2012)
Eur Phys J Appl Phys
, vol.57
, Issue.3
, pp. 223-256
-
-
Flaud, P.1
Guesdon, P.2
Fullana, J.-M.3
-
17
-
-
0035824658
-
On the coupling of 3D and 1D Navier–Stokes equations for flow problems in compliant vessels
-
FormaggiaL, GerbeauJ-F, NobileF, QuarteroniA. 2001. On the coupling of 3D and 1D Navier–Stokes equations for flow problems in compliant vessels. Comput Methods Appl Mech Eng. 191(6):561–582.
-
(2001)
Comput Methods Appl Mech Eng
, vol.191
, Issue.6
, pp. 561-582
-
-
Formaggia, L.1
Gerbeau, J.-F.2
Nobile, F.3
Quarteroni, A.4
-
18
-
-
0942268686
-
One-dimensional models for blood flow in arteries
-
FormaggiaL, LamponiD, QuarteroniA. 2003. One-dimensional models for blood flow in arteries. J Eng Math. 47:251–276.
-
(2003)
J Eng Math
, vol.47
, pp. 251-276
-
-
Formaggia, L.1
Lamponi, D.2
Quarteroni, A.3
-
20
-
-
65649107299
-
A branched one-dimensional model of vessel networks
-
FullanaJ-M, ZaleskiS. 2009. A branched one-dimensional model of vessel networks. J Fluid Mech. 621(1):183–204.
-
(2009)
J Fluid Mech
, vol.621
, Issue.1
, pp. 183-204
-
-
Fullana, J.-M.1
Zaleski, S.2
-
22
-
-
18844458168
-
Fluid–structure interaction in blood flows on geometries based on medical imaging
-
GerbeauJ-F, VidrascuM, FreyP. 2005. Fluid–structure interaction in blood flows on geometries based on medical imaging. Comput Struct. 83(2):155–165.
-
(2005)
Comput Struct
, vol.83
, Issue.2
, pp. 155-165
-
-
Gerbeau, J.-F.1
Vidrascu, M.2
Frey, P.3
-
24
-
-
0019089683
-
A viscoelastic model for use in predicting arterial pulse waves
-
HolensteinR, NiedererP, AnlikerM. 1980. A viscoelastic model for use in predicting arterial pulse waves. J Biomech Eng. 102(4):318–325.
-
(1980)
J Biomech Eng
, vol.102
, Issue.4
, pp. 318-325
-
-
Holenstein, R.1
Niederer, P.2
Anliker, M.3
-
25
-
-
0015819837
-
On the one-dimensional theory of blood flow in the larger vessels
-
HughesTJ, LublinerJ. 1973. On the one-dimensional theory of blood flow in the larger vessels. Math Biosci. 18(1):161–170.
-
(1973)
Math Biosci
, vol.18
, Issue.1
, pp. 161-170
-
-
Hughes, T.J.1
Lubliner, J.2
-
26
-
-
0015958438
-
Nonlinear wave propagation in viscoelastic tubes: application to aortic rupture
-
KivityY, CollinsR. 1974. Nonlinear wave propagation in viscoelastic tubes: application to aortic rupture. J Biomech. 7(1):67–76.
-
(1974)
J Biomech
, vol.7
, Issue.1
, pp. 67-76
-
-
Kivity, Y.1
Collins, R.2
-
27
-
-
84874021628
-
Slope limiting for discontinuous Galerkin approximations with a possibly non-orthogonal Taylor basis
-
KuzminD. 2012. Slope limiting for discontinuous Galerkin approximations with a possibly non-orthogonal Taylor basis. Int J Numer Methods Fluids. 71:1178–1190.
-
(2012)
Int J Numer Methods Fluids
, vol.71
, pp. 1178-1190
-
-
Kuzmin, D.1
-
28
-
-
0033881499
-
An inverse technique to deduce the elasticity of a large artery
-
LagréeP-Y. 2000. An inverse technique to deduce the elasticity of a large artery. EPJ Appl Phys. 9(2):153–164.
-
(2000)
EPJ Appl Phys
, vol.9
, Issue.2
, pp. 153-164
-
-
Lagrée, P.-Y.1
-
29
-
-
0029673827
-
Etude de l'écoulement du sang dans les artères: effets nonlinéaires et dissipatifs
-
LagréeP-Y, RossiM. 1996. Etude de l'écoulement du sang dans les artères: effets nonlinéaires et dissipatifs[Blood flow in arteries: nonlinear and dissipative effects]. CR Acad Sci II B. 322(5):401–408.
-
(1996)
CR Acad Sci II B
, vol.322
, Issue.5
, pp. 401-408
-
-
Lagrée, P.-Y.1
Rossi, M.2
-
31
-
-
18044393022
-
Blood flow and structure interactions in a stented abdominal aortic aneurysm model
-
LiZ, KleinstreuerC. 2005. Blood flow and structure interactions in a stented abdominal aortic aneurysm model. Med Eng Phys. 27(5):369–382.
-
(2005)
Med Eng Phys
, vol.27
, Issue.5
, pp. 369-382
-
-
Li, Z.1
Kleinstreuer, C.2
-
32
-
-
0004289888
-
-
Cambridge: Cambridge University Press
-
LighthillJ. 2001. Waves in fluids. Cambridge: Cambridge University Press.
-
(2001)
Waves in fluids
-
-
Lighthill, J.1
-
33
-
-
38549123802
-
The effect of viscosity in hypervelocity impact cratering
-
MacCormackRW. 2003. The effect of viscosity in hypervelocity impact cratering. J Spacecraft Rockets. 40(5):757–763.
-
(2003)
J Spacecraft Rockets
, vol.40
, Issue.5
, pp. 757-763
-
-
MacCormack, R.W.1
-
34
-
-
84862266042
-
A two-level time step technique for the partitioned solution of one-dimensional arterial networks
-
MalossiACI, BlancoPJ, DeparisS. 2012. A two-level time step technique for the partitioned solution of one-dimensional arterial networks. Comput Methods Appl Mech Eng. 237:212–226.
-
(2012)
Comput Methods Appl Mech Eng
, vol.237
, pp. 212-226
-
-
Malossi, A.C.I.1
Blanco, P.J.2
Deparis, S.3
-
35
-
-
34547615709
-
2007 Guidelines for the management of arterial hypertension the task force for the management of arterial hypertension of the European Society of Hypertension (ESH) and of the European Society of Cardiology (ESC)
-
ManciaG, De BackerG, DominiczakA, CifkovaR, FagardR, GermanoG, GrassiG, HeagertyAM, KjeldsenSE, LaurentS, et al. 2007. 2007 Guidelines for the management of arterial hypertension the task force for the management of arterial hypertension of the European Society of Hypertension (ESH) and of the European Society of Cardiology (ESC). Eur Heart J. 28(12):1462–1536.
-
(2007)
Eur Heart J
, vol.28
, Issue.12
, pp. 1462-1536
-
-
Mancia, G.1
De Backer, G.2
Dominiczak, A.3
Cifkova, R.4
Fagard, R.5
Germano, G.6
Grassi, G.7
Heagerty, A.M.8
Kjeldsen, S.E.9
Laurent, S.10
-
36
-
-
77954669370
-
Accurate modelling of unsteady flows in collapsible tubes
-
MarchandiseE, FlaudP. 2010. Accurate modelling of unsteady flows in collapsible tubes. Comput Methods Biomech Biomed Eng. 13(2):279–290.
-
(2010)
Comput Methods Biomech Biomed Eng
, vol.13
, Issue.2
, pp. 279-290
-
-
Marchandise, E.1
Flaud, P.2
-
37
-
-
57849102045
-
A numerical hemodynamic tool for predictive vascular surgery
-
MarchandiseE, WillemetM, LacroixV. 2009. A numerical hemodynamic tool for predictive vascular surgery. Med Eng Phys. 31(1):131–144.
-
(2009)
Med Eng Phys
, vol.31
, Issue.1
, pp. 131-144
-
-
Marchandise, E.1
Willemet, M.2
Lacroix, V.3
-
38
-
-
35448940127
-
Pulse wave propagation in a model human arterial network: assessment of 1-D numerical simulations against in vitro measurements
-
MatthysKS, AlastrueyJ, PeiróJ, KhirAW, SegersP, VerdonckPR, ParkerKH, SherwinSJ. 2007. Pulse wave propagation in a model human arterial network: assessment of 1-D numerical simulations against in vitro measurements. J Biomech. 40(15):3476–3486.
-
(2007)
J Biomech
, vol.40
, Issue.15
, pp. 3476-3486
-
-
Matthys, K.S.1
Alastruey, J.2
Peiró, J.3
Khir, A.W.4
Segers, P.5
Verdonck, P.R.6
Parker, K.H.7
Sherwin, S.J.8
-
39
-
-
44949208678
-
A 1D arterial blood flow model incorporating ventricular pressure, aortic valve and regional coronary flow using the locally conservative Galerkin (LCG) method
-
MynardJP, NithiarasuP. 2008. A 1D arterial blood flow model incorporating ventricular pressure, aortic valve and regional coronary flow using the locally conservative Galerkin (LCG) method. Commun Numer Methods Eng. 24(5):367–417.
-
(2008)
Commun Numer Methods Eng
, vol.24
, Issue.5
, pp. 367-417
-
-
Mynard, J.P.1
Nithiarasu, P.2
-
40
-
-
23444441164
-
A numerical assessment of wall shear stress changes after endovascular stenting
-
NicoudF, VernhetH, DauzatM. 2005. A numerical assessment of wall shear stress changes after endovascular stenting. J Biomech. 38(10):2019–2027.
-
(2005)
J Biomech
, vol.38
, Issue.10
, pp. 2019-2027
-
-
Nicoud, F.1
Vernhet, H.2
Dauzat, M.3
-
41
-
-
67349196011
-
Coupling strategies for the numerical simulation of blood flow in deformable arteries by 3D and 1D models
-
NobileF. 2009. Coupling strategies for the numerical simulation of blood flow in deformable arteries by 3D and 1D models. Math Comput Model. 49(11):2152–2160.
-
(2009)
Math Comput Model
, vol.49
, Issue.11
, pp. 2152-2160
-
-
Nobile, F.1
-
42
-
-
0034351105
-
Numerical simulation and experimental validation of blood flow in arteries with structured-tree outflow conditions
-
OlufsenMS, PeskinC, KimWY, PedersenEM, NadimA, LarsenJ. 2000. Numerical simulation and experimental validation of blood flow in arteries with structured-tree outflow conditions. Ann Biomed Eng. 28(11):1281–1299.
-
(2000)
Ann Biomed Eng
, vol.28
, Issue.11
, pp. 1281-1299
-
-
Olufsen, M.S.1
Peskin, C.2
Kim, W.Y.3
Pedersen, E.M.4
Nadim, A.5
Larsen, J.6
-
43
-
-
85047680263
-
The area ratio of normal arterial junctions and its implications in pulse wave reflections
-
PapageorgiouGL, JonesBN, ReddingVJ, HudsonN. 1990. The area ratio of normal arterial junctions and its implications in pulse wave reflections. Cardiovasc Res. 24(6):478–484.
-
(1990)
Cardiovasc Res
, vol.24
, Issue.6
, pp. 478-484
-
-
Papageorgiou, G.L.1
Jones, B.N.2
Redding, V.J.3
Hudson, N.4
-
45
-
-
0029329172
-
Computer simulation of local blood flow and vessel mechanics in a compliant carotid artery bifurcation model
-
PerktoldK, RappitschG. 1995. Computer simulation of local blood flow and vessel mechanics in a compliant carotid artery bifurcation model. J Biomech. 28(7):845–856.
-
(1995)
J Biomech
, vol.28
, Issue.7
, pp. 845-856
-
-
Perktold, K.1
Rappitsch, G.2
-
46
-
-
0036302210
-
An anatomically based model of transient coronary blood flow in the heart
-
PullanAJ, SmithNP, HunterPJ. 2002. An anatomically based model of transient coronary blood flow in the heart. SIAM J Appl Math. 62(3):990–1018.
-
(2002)
SIAM J Appl Math
, vol.62
, Issue.3
, pp. 990-1018
-
-
Pullan, A.J.1
Smith, N.P.2
Hunter, P.J.3
-
47
-
-
79954421869
-
Verification of a one-dimensional finite element method for modeling blood flow in the cardiovascular system incorporating a viscoelastic wall model
-
RaghuR, TaylorCA. 2011. Verification of a one-dimensional finite element method for modeling blood flow in the cardiovascular system incorporating a viscoelastic wall model. Finite Elem Anal Des. 47(6):586–592.
-
(2011)
Finite Elem Anal Des
, vol.47
, Issue.6
, pp. 586-592
-
-
Raghu, R.1
Taylor, C.A.2
-
48
-
-
80052903753
-
Comparative study of viscoelastic arterial wall models in nonlinear one-dimensional finite element simulations of blood flow
-
RaghuR, Vignon-ClementelIE, FigueroaCA, TaylorCA. 2011. Comparative study of viscoelastic arterial wall models in nonlinear one-dimensional finite element simulations of blood flow. J Biomech Eng. 133(8):081003.
-
(2011)
J Biomech Eng
, vol.133
, Issue.8
, pp. 081003
-
-
Raghu, R.1
Vignon-Clementel, I.E.2
Figueroa, C.A.3
Taylor, C.A.4
-
49
-
-
80052304983
-
Validation of a patient-specific one-dimensional model of the systemic arterial tree
-
ReymondP, BohrausY, PerrenF, LazeyrasF, StergiopulosN. 2011. Validation of a patient-specific one-dimensional model of the systemic arterial tree. Am J Physiol Heart Circ Physiol. 301(3):H1173–H1182.
-
(2011)
Am J Physiol Heart Circ Physiol
, vol.301
, Issue.3
, pp. 1173-1182
-
-
Reymond, P.1
Bohraus, Y.2
Perren, F.3
Lazeyras, F.4
Stergiopulos, N.5
-
50
-
-
67650073170
-
Validation of a one-dimensional model of the systemic arterial tree
-
ReymondP, MerendaF, PerrenF, RüfenachtD, StergiopulosN. 2009. Validation of a one-dimensional model of the systemic arterial tree. Am J Physiol Heart Circ Physiol. 297(1):H208–H222.
-
(2009)
Am J Physiol Heart Circ Physiol
, vol.297
, Issue.1
, pp. 208-222
-
-
Reymond, P.1
Merenda, F.2
Perren, F.3
Rüfenacht, D.4
Stergiopulos, N.5
-
51
-
-
84855217098
-
One-dimensional model for propagation of a pressure wave in a model of the human arterial network: comparison of theoretical and experimental results
-
SaitoM, IkenagaY, MatsukawaM, WatanabeY, AsadaT, LagréeP-Y. 2011. One-dimensional model for propagation of a pressure wave in a model of the human arterial network: comparison of theoretical and experimental results. J Biomech Eng. 133:121005.
-
(2011)
J Biomech Eng
, vol.133
, pp. 121005
-
-
Saito, M.1
Ikenaga, Y.2
Matsukawa, M.3
Watanabe, Y.4
Asada, T.5
Lagrée, P.-Y.6
-
52
-
-
0031281302
-
Assessment of distributed arterial network models
-
SegersP, StergiopulosN, VerdonckP, VerhoevenR. 1997. Assessment of distributed arterial network models. Med Biol Eng Comput. 35(6):729–736.
-
(1997)
Med Biol Eng Comput
, vol.35
, Issue.6
, pp. 729-736
-
-
Segers, P.1
Stergiopulos, N.2
Verdonck, P.3
Verhoeven, R.4
-
53
-
-
0242497983
-
Computational modelling of 1D blood flow with variable mechanical properties and its application to the simulation of wave propagation in the human arterial system
-
SherwinSJ, FormaggiaL, PeiroJ, FrankeV. 2003. Computational modelling of 1D blood flow with variable mechanical properties and its application to the simulation of wave propagation in the human arterial system. Int J Numer Methods Fluids. 43(6–7):673–700.
-
(2003)
Int J Numer Methods Fluids
, vol.43
, Issue.6-7
, pp. 673-700
-
-
Sherwin, S.J.1
Formaggia, L.2
Peiro, J.3
Franke, V.4
-
54
-
-
0012894872
-
Different formulations of the discontinuous Galerkin method for the viscous terms
-
ShuCW. 2001. Different formulations of the discontinuous Galerkin method for the viscous terms. In: Advances in scientific computing. p. 144–155.
-
(2001)
Advances in scientific computing
, pp. 144-155
-
-
Shu, C.W.1
-
55
-
-
45449125925
-
Efficient implementation of essentially non-oscillatory shock-capturing schemes
-
ShuCW, OsherS. 1988. Efficient implementation of essentially non-oscillatory shock-capturing schemes. J Comput Phys. 77(2):439–471.
-
(1988)
J Comput Phys
, vol.77
, Issue.2
, pp. 439-471
-
-
Shu, C.W.1
Osher, S.2
-
56
-
-
0037599301
-
In vivo validation of a one-dimensional finite-element method for predicting blood flow in cardiovascular bypass grafts
-
SteeleBN, WanJ, KuJP, HughesTJ, TaylorCA. 2003. In vivo validation of a one-dimensional finite-element method for predicting blood flow in cardiovascular bypass grafts. IEEE Trans Biomed Eng. 50(6):649–656.
-
(2003)
IEEE Trans Biomed Eng
, vol.50
, Issue.6
, pp. 649-656
-
-
Steele, B.N.1
Wan, J.2
Ku, J.P.3
Hughes, T.J.4
Taylor, C.A.5
-
57
-
-
0027006820
-
Computer simulation of arterial flow with applications to arterial and aortic stenoses
-
StergiopulosN, YoungDF, RoggeTR. 1992. Computer simulation of arterial flow with applications to arterial and aortic stenoses. J Biomech. 25(12):1477–1488.
-
(1992)
J Biomech
, vol.25
, Issue.12
, pp. 1477-1488
-
-
Stergiopulos, N.1
Young, D.F.2
Rogge, T.R.3
-
58
-
-
0019810163
-
Theoretical analysis of arterial hemodynamics including the influence of bifurcations
-
StettlerJC, NiedererP, AnlikerM. 1981. Theoretical analysis of arterial hemodynamics including the influence of bifurcations. Ann Biomed Eng. 9(2):145–164.
-
(1981)
Ann Biomed Eng
, vol.9
, Issue.2
, pp. 145-164
-
-
Stettler, J.C.1
Niederer, P.2
Anliker, M.3
-
59
-
-
33745641067
-
Fluid–structure interaction modeling of aneurysmal conditions with high and normal blood pressures
-
ToriiR, OshimaM, KobayashiT, TakagiK, TezduyarTE. 2006. Fluid–structure interaction modeling of aneurysmal conditions with high and normal blood pressures. Comput Mech. 38(4–5):482–490.
-
(2006)
Comput Mech
, vol.38
, Issue.4-5
, pp. 482-490
-
-
Torii, R.1
Oshima, M.2
Kobayashi, T.3
Takagi, K.4
Tezduyar, T.E.5
-
60
-
-
1642357631
-
Outflow boundary conditions for one-dimensional finite element modeling of blood flow and pressure waves in arteries
-
VignonIE, TaylorCA. 2004. Outflow boundary conditions for one-dimensional finite element modeling of blood flow and pressure waves in arteries. Wave Motion. 39(4):361–374.
-
(2004)
Wave Motion
, vol.39
, Issue.4
, pp. 361-374
-
-
Vignon, I.E.1
Taylor, C.A.2
-
61
-
-
0036597942
-
A one-dimensional finite element method for simulation-based medical planning for cardiovascular disease
-
WanJ, SteeleB, SpicerSA, StrohbandS, FeijoGR, HughesTJR, TaylorCA. 2002. A one-dimensional finite element method for simulation-based medical planning for cardiovascular disease. Comput Methods Appl Mech Eng. 5(3):195–206.
-
(2002)
Comput Methods Appl Mech Eng
, vol.5
, Issue.3
, pp. 195-206
-
-
Wan, J.1
Steele, B.2
Spicer, S.A.3
Strohband, S.4
Feijo, G.R.5
Hughes, T.J.R.6
Taylor, C.A.7
-
62
-
-
0942305100
-
Wave propagation in a model of the arterial circulation
-
WangJJ, ParkerKH. 2004. Wave propagation in a model of the arterial circulation. J Biomech. 37(4):457–470.
-
(2004)
J Biomech
, vol.37
, Issue.4
, pp. 457-470
-
-
Wang, J.J.1
Parker, K.H.2
-
63
-
-
84874196147
-
Comparing different numerical methods for solving arterial 1D flows in networks
-
WangX, DelestreO, FullanaJ-M, SaitoM, IkenagaY, MatsukawaM, LagréeP-Y. 2012. Comparing different numerical methods for solving arterial 1D flows in networks. Comput Methods Appl Mech Eng. 15(Suppl 1):61–62.
-
(2012)
Comput Methods Appl Mech Eng
, vol.15
, pp. 61-62
-
-
Wang, X.1
Delestre, O.2
Fullana, J.-M.3
Saito, M.4
Ikenaga, Y.5
Matsukawa, M.6
Lagrée, P.-Y.7
-
65
-
-
0042036250
-
Solitary waves in large blood vessels
-
YomosaS. 1987. Solitary waves in large blood vessels. J Phys Soc Jpn. 56:506–520.
-
(1987)
J Phys Soc Jpn
, vol.56
, pp. 506-520
-
-
Yomosa, S.1
-
66
-
-
0022912851
-
A global mathematical model of the cerebral circulation in man
-
ZagzouleM, Marc-VergnesJ-P. 1986. A global mathematical model of the cerebral circulation in man. J Biomech. 19(12):1015–1022.
-
(1986)
J Biomech
, vol.19
, Issue.12
, pp. 1015-1022
-
-
Zagzoule, M.1
Marc-Vergnes, J.-P.2
|