Clinical implications of hemodynamic analysis for the three-dimension iliac vein model with different stenosis
暂无分享,去创建一个
[1] Haoyao Cao,et al. A Hemodynamic Analysis of the Thrombosis Within Occluded Coronary Arterial Fistulas With Terminal Aneurysms Using a Blood Stasis Model , 2022, Frontiers in Physiology.
[2] Da Li,et al. A two-fluid blood stasis model for false lumen thrombosis after type B dissection repair , 2021, Computer methods in biomechanics and biomedical engineering.
[3] Peng Wu,et al. Patient-specific hemodynamic analysis of IVCS-induced DVT , 2021, Computer methods in biomechanics and biomedical engineering.
[4] Guang-Mao Liu,et al. A two-phase flow approach for modeling blood stasis and estimating the thrombosis potential of a ventricular assist device , 2020, The International journal of artificial organs.
[5] Jian Liu,et al. Flow resistance coefficient analysis of left anterior descending artery stenosis: A preliminary study , 2019, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.
[6] Keefe B Manning,et al. Steady Flow in a Patient-Averaged Inferior Vena Cava—Part II: Computational Fluid Dynamics Verification and Validation , 2018, Cardiovascular engineering and technology.
[7] G. Fortuny,et al. A comparative CFD study of four inferior vena cava filters , 2018, International journal for numerical methods in biomedical engineering.
[8] Marta Nuñez-Garcia,et al. Sensitivity analysis of geometrical parameters to study haemodynamics and thrombus formation in the left atrial appendage , 2018, International journal for numerical methods in biomedical engineering.
[9] Silvia Schievano,et al. Computational Fluid Dynamic Analysis of the Left Atrial Appendage to Predict Thrombosis Risk , 2018, fcvm.
[10] A. Redaelli,et al. An experimental and computational study of the inferior vena cava hemodynamics under respiratory-induced collapse of the infrarenal IVC. , 2018, Medical engineering & physics.
[11] A. Lefieux,et al. Coupled Morphological–Hemodynamic Computational Analysis of Type B Aortic Dissection: A Longitudinal Study , 2018, Annals of Biomedical Engineering.
[12] J. Kleijnen,et al. The predictive value of haemodynamic parameters for outcome of deep venous reconstructions in patients with chronic deep vein obstruction – A systematic review , 2017, Phlebology.
[13] David Nordsletten,et al. Multi-modality image-based computational analysis of haemodynamics in aortic dissection , 2015, Biomechanics and modeling in mechanobiology.
[14] Zhenjie Liu,et al. Endovascular treatment for symptomatic iliac vein compression syndrome: a prospective consecutive series of 48 patients. , 2014, Annals of vascular surgery.
[15] A. Mahnken,et al. CIRSE Standards of Practice Guidelines on Iliocaval Stenting , 2014, CardioVascular and Interventional Radiology.
[16] Donald L. Miller,et al. Quality improvement guidelines for the treatment of lower-extremity deep vein thrombosis with use of endovascular thrombus removal. , 2014, Journal of vascular and interventional radiology : JVIR.
[17] Zhonghua Sun. Coronary CT angiography: Beyond morphological stenosis analysis. , 2013, World journal of cardiology.
[18] P. Duan,et al. Stenting of iliac vein obstruction following catheter‐directed thrombolysis in lower extremity deep vein thrombosis , 2013, Chinese medical journal.
[19] N. Powe,et al. Iliac vein compression as risk factor for left- versus right-sided deep venous thrombosis: case-control study. , 2012, Radiology.
[20] P. Stone,et al. Endothelial shear stress in the evolution of coronary atherosclerotic plaque and vascular remodelling: current understanding and remaining questions. , 2012, Cardiovascular research.
[21] Manolis Gavaises,et al. Flow Patterns at Stented Coronary Bifurcations: Computational Fluid Dynamics Analysis , 2012, Circulation. Cardiovascular interventions.
[22] A. Wolberg,et al. Procoagulant Activity in Hemostasis and Thrombosis: Virchow's Triad Revisited , 2012, Anesthesia and analgesia.
[23] Xiao-Qiang Li,et al. Endovascular treatment of iliac vein compression syndrome. , 2011, Chinese medical journal.
[24] James E. Moore,et al. Three-dimensional analysis of flow disturbances caused by clots in inferior vena cava filters. , 2011, Journal of vascular and interventional radiology : JVIR.
[25] S. Chien,et al. Effects of disturbed flow on vascular endothelium: pathophysiological basis and clinical perspectives. , 2011, Physiological reviews.
[26] Y. Mei,et al. Short-term effects of double-layer autologous vein graft on restraint of excessive distension and alleviation of neointimal hyperplasia in a porcine saphenous vein graft model , 2011, Heart and Vessels.
[27] M. A. Singer,et al. Toward an optimal position for inferior vena cava filters: computational modeling of the impact of renal vein inflow with Celect and TrapEase filters. , 2010, Journal of vascular and interventional radiology : JVIR.
[28] Alberto Redaelli,et al. Blood damage safety of prosthetic heart valves. Shear-induced platelet activation and local flow dynamics: a fluid-structure interaction approach. , 2009, Journal of biomechanics.
[29] J. Ekaterinaris,et al. The influence of intraluminal thrombus on abdominal aortic aneurysm wall stress. , 2009, International angiology : a journal of the International Union of Angiology.
[30] M. A. Singer,et al. Computational modeling of blood flow in the TrapEase inferior vena cava filter. , 2008, Journal of vascular and interventional radiology : JVIR.
[31] Donald L. Miller,et al. Quality improvement guidelines for the treatment of lower extremity deep vein thrombosis with use of endovascular thrombus removal. , 2009, Journal of vascular and interventional radiology : JVIR.
[32] L. Oğuzkurt,et al. Compression of the left common iliac vein in asymptomatic subjects and patients with left iliofemoral deep vein thrombosis. , 2008, Journal of vascular and interventional radiology : JVIR.
[33] J. Haga,et al. Molecular basis of the effects of shear stress on vascular endothelial cells. , 2005, Journal of biomechanics.
[34] Y. Kwak,et al. Deep venous thrombosis caused by iliac vein compression syndrome , 2004 .
[35] John F LaDisa,et al. Stent design properties and deployment ratio influence indexes of wall shear stress: a three-dimensional computational fluid dynamics investigation within a normal artery. , 2004, Journal of applied physiology.
[36] Shmuel Einav,et al. Dynamics of Blood Flow and Platelet Transport in Pathological Vessels , 2004, Annals of the New York Academy of Sciences.
[37] D. Ku,et al. Early effects of arterial hemodynamic conditions on human saphenous veins perfused ex vivo. , 2000, Arteriosclerosis, thrombosis, and vascular biology.
[38] R M Nerem,et al. The study of the influence of flow on vascular endothelial biology. , 1998, The American journal of the medical sciences.