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 1-20    21-31 
1.
Hess Neointima formation in expanded polytetrafluoroethylene vascular grafts with different fibril lengths following implantation in the rat aorta // Microsurgery, 1989. Vol. 10, N 1.-С.47-52

2.
Triphasic sequence of neointimal formation in the cuffed carotid artery of the rabbit // Arterioscler. and Thrombosis, 1992. Vol. 12, N 12.-С.1447

3.
Effects of dexamethasone on neointima formation and vascular reactivity in the collared carotid artery of the rabbit // Arch. int. pharmacodyn. et ther., 1993. Vol. 326.-С.115-116

4.
Chronic inhibition of nitric oxide production accelerates neointima formation and impairs endothelial function in hypercholesterolemic rabbits // Arterioscler. and Thrombosis, 1994. Vol. 14, N 5.-С.753-759

5.
Mechanism of inhibition of neointimal formation by the angiotensin-converting enzyme inhibitor cilazapril: A study in balloon catheter - injured rat carotid arteries // Arteriosclerosis, Thrombosis and Vasc. Biol., 1995. Vol. 15, N 11.-С.1945-1950

6.
Effect of phosphorothioated oligonucleotides on neointima formation in the rat carotid artery: Dissecting the mechanism of action // Arteriosclerosis, Thrombosis and Vasc. Biol., 1997. Vol. 17, N 11.-С.2326-2332

7.
MacLellan W.Robb Cell cycle regulators in vascular disease // Circulation, 1997. Vol. 96, N 6.-С.1717-1719

8.
Function of the plasminogen/plasmin and matrix metalloproteinase systems after vascular injury in mice with targeted inactivation of fibrinolytic system genes // Arteriosclerosis, Thrombosis and Vasc. Biol., 1998. Vol. 18, N 7.-С.1035-1045

9.
Effects of a single local administration of cilostazol on neointimal formation in balloon-injured rat carotid artery // Atherosclerosis, 1999. Vol. 142, N 1.-С.41-46

10.
Continuous perivascular L-arginine delivery increases total vessel area and reduces neointimal thickening after experimental balloon dilatation // Arteriosclerosis, Thrombosis, and Vasc. Biol., 1999. Vol. 19, N 3.-С.767-776

11.
Vascular injury causes neointimal formation in angiotensin II type 1a receptor knockout mice // Circ. Res., 1999. Vol. 84, N 2.-С.179-185

12.
Lijnen H.R. Tissue inhibitor of matrix metalloproteinases-1 impairs arterial neointima formation after vascular injury in mice // Circ. Res., 1999. Vol. 84, N 12.-С.1186-1191

13.
Continuous perivascular L-arginine delivery increases total vessel area and reduces neointimal thickening after experimental balloon dilatation // Arteriosclerosis, Thrombosis, and Vasc. Biol., 1999. Vol. 19, N 3.-С.767-776

14.
Local delivery of platelet-derived growth factor receptor-specific tyrphostin inhibits neointimal formation in rats // Arteriosclerosis, Thrombosis, and Vasc. Biol., 2000. Vol. 20, N 3.-С.667-676

15.
YC-1, a benzyl indazole derivative, stimulates vascualr cGMP and inhibits neointima formation // Biochem. and Biophys. Res. Commun., 2000. Vol. 279, N 2.-С.646-652

16.
Effects of short-term estrogen treatment on the neointimal response to balloon injury of rat carotid artery // Amer. J. Cardiol., 2000. Vol. 85, N 10.-С.1276-1279

17.
Gene transfer of the urokinase-type plasminogen activator receptor-targeted matrix metalloproteinase inhibitor TIMP-1.ATF suppresses neointima formation more efficiently than tissue inhibitor of metalloproteinase-1 // Circ. Res., 2002. Vol. 91, N 10.-С.945-952

18.
Administration of recombinant P-selectin glycoprotein ligand Fc fusion protein suppresses inflammation and neointimal formation in zucker diabetic rat model // Arteriosclerosis, Thrombosis, and Vasc. Biol., 2002. Vol. 22, N 10.-С.1598-1603

19.
Gene transfer of the urokinase-type plasminogen activator receptor-targeted matrix metalloproteinase inhibitor TIMP-1.ATF suppresses neointima formation more efficiently than tissue inhibitor of metalloproteinase-1 // Circ. Res., 2002. Vol. 91, N 10.-С.945-952

20.
Administration of recombinant P-selectin glycoprotein ligand Fc fusion protein suppresses inflammation and neointimal formation in zucker diabetic rat model // Arteriosclerosis, Thrombosis, and Vasc. Biol., 2002. Vol. 22, N 10.-С.1598-1603

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