Flow mediated fibrin thrombus formation in an endothelium-lined model of arterial branching.
暂无分享,去创建一个
U. Heinzmann | C B Reininger | A. Reininger | L. Wurzinger | L J Wurzinger | C. Reininger | A J Reininger | U Heinzmann | P Friedrich | P. Friedrich
[1] H. Baumgartner,et al. The role of blood flow in platelet adhesion, fibrin deposition, and formation of mural thrombi. , 1973, Microvascular research.
[2] H. Clark,et al. Polymerization of fibrin in shear flow fields , 1979 .
[3] M. Kaibara,et al. Rheological study on network structure of fibrin clots under various conditions. , 1981, Biorheology.
[4] Stehbens We,et al. Hemodynamics and atherosclerosis. , 1982, Biorheology.
[5] K. Watanabe,et al. Influence of fibrin, fibrinogen and fibrinogen degradation products on cultured endothelial cells. , 1983, Atherosclerosis.
[6] L. McIntire,et al. Response of cultured endothelial cells to steady flow. , 1984, Microvascular research.
[7] E. Jaffe. Culture and identification of large vessel endothelial cells , 1984 .
[8] G. Wilner,et al. Fibrin-mediated vascular injury. Identification of fibrin peptides that mediate endothelial cell retraction. , 1984, The American journal of pathology.
[9] H Schmid-Schönbein,et al. Towards a concept of thrombosis in accelerated flow: rheology, fluid dynamics, and biochemistry. , 1985, Biorheology.
[10] H. Goldsmith,et al. Particle flow behavior in models of branching vessels. II. Effects of branching angle and diameter ratio on flow patterns. , 1985, Biorheology.
[11] M. Kratzer,et al. Streamline pattern and velocity components of flow in a model of a branching coronary vessel--possible functional implication for the development of localized platelet deposition in vitro. , 1986, Microvascular research.
[12] R L Kline,et al. Injury and Repair of Endothelium at Sites of Flow Disturbances Near Abdominal Aortic Coarctations in Rabbits , 1986, Arteriosclerosis.
[13] U. Delvos,et al. The Mechanism of Fibrin‐Induced Disorganization of Cultured Human Endothelial Cell Monolayers , 1986, Arteriosclerosis.
[14] D. Ku,et al. Hemodynamics and atherosclerosis. Insights and perspectives gained from studies of human arteries. , 1988, Archives of pathology & laboratory medicine.
[15] R. Mesa-Tejada,et al. Identification and Distribution of Fibrinogen, Fibrin, and Fibrin(ogen) Products in Atherosclerosis: Use of Monoclonal Antibodies , 1989, Arteriosclerosis.
[16] Liepsch Dw. Effect of blood flow parameters on flow patterns at arterial bifurcations--studies in models. , 1990 .
[17] M. Mancini,et al. Measuring plasma fibrinogen to predict stroke and myocardial infarction. , 1990, Arteriosclerosis.
[18] J. Sixma,et al. Quantification of fibrin deposition in flowing blood with peroxidase-labeled fibrinogen. High shear rates induce decreased fibrin deposition and appearance of fibrin monomers. , 1991, Arteriosclerosis and thrombosis : a journal of vascular biology.
[19] E. Cera,et al. Phenomenological analysis of the clotting curve , 1991 .
[20] I. Kovács,et al. Significance of plasma fibrinogen in coronary arterial disease: marker or causative risk factor for arterial thrombosis? , 1992, International journal of cardiology.
[21] H. Sago,et al. Cell Shape Change and Cytosolic Ca2+ in Human Umbilical-Vein Endothelial Cells Stimulated with Thrombin , 1992, Thrombosis and Haemostasis.
[22] D. Ku,et al. Pulsatile flow visualization in the abdominal aorta under differing physiologic conditions: implications for increased susceptibility to atherosclerosis. , 1992, Journal of biomechanical engineering.
[23] R. Nerem. Vascular fluid mechanics, the arterial wall, and atherosclerosis. , 1992, Journal of biomechanical engineering.
[24] V. Fuster,et al. The pathogenesis of coronary artery disease and the acute coronary syndromes (2). , 1992, The New England journal of medicine.
[25] J. Weisel,et al. Computer modeling of fibrin polymerization kinetics correlated with electron microscope and turbidity observations: clot structure and assembly are kinetically controlled. , 1992, Biophysical journal.
[26] A. Malik,et al. Thrombin-Mediated Increase in Vascular Endothelial Permeability , 1992, Seminars in thrombosis and hemostasis.
[27] U. Heinzmann,et al. EGF-receptor immunolabeling as shown by LM and SEM. , 1992, Progress in histochemistry and cytochemistry.
[28] A. Malik,et al. Fibrin contact increases endothelial permeability to albumin , 1992, Journal of cellular physiology.
[29] M. Blombäck,et al. Fibrin Gel Network Characteristics and Coronary Heart Disease: Relations to Plasma Fibrinogen Concentration, Acute Phase Protein, Serum Lipoproteins and Coronary Atherosclerosis , 1992, Thrombosis and Haemostasis.
[30] A Tippe,et al. Shear dependence of the fibrin coagulation kinetics in vitro. , 1993, Thrombosis research.
[31] J. Ando,et al. Wall shear stress rather than shear rate regulates cytoplasmic Ca++ responses to flow in vascular endothelial cells. , 1993, Biochemical and biophysical research communications.
[32] E. Ernst. The role of fibrinogen as a cardiovascular risk factor. , 1993, Atherosclerosis.
[33] R. Ross. The pathogenesis of atherosclerosis: a perspective for the 1990s , 1993, Nature.
[34] Thomas B. Tschopp,et al. Relationship between tissue factor expression and deposition of fibrin, platelets, and leukocytes on cultured endothelial cells under venous blood flow conditions , 1993 .