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Journal of Vascular Research|March 2, 1999
A new computerized biomechanical perfusion model for ex vivo study of fluid mechanical forces in intact conduit vesselsL Gan, L S Sjögren, R Doroudi, et al.Cardiovascular Research|October 18, 2000
Temporal regulation of endothelial ET-1 and eNOS expression in intact human conduit vessels exposed to different intraluminal pressure levels at physiological shear stressL M Gan, L Selin-Sjögren, R Doroudi, et al.Biochemical and Biophysical Research Communications|March 1, 2000
Effects of shear stress on eicosanoid gene expression and metabolite production in vascular endothelium as studied in a novel biomechanical perfusion modelR Doroudi, L M Gan, L Selin Sjögren, et al.Biochemical and Biophysical Research Communications|June 2, 2000
Distinct regulation of vascular endothelial growth factor in intact human conduit vessels exposed to laminar fluid shear stress and pressureL Gan, M Miocic, R Doroudi, et al.FEBS Letters|July 19, 2000
Differential immediate-early gene responses to shear stress and intraluminal pressure in intact human conduit vesselsL Gan, R Doroudi, U Hägg, et al.Thrombosis and Haemostasis|August 26, 2000
Fluid shear stress increases the intra-cellular storage pool of tissue-type plasminogen activator in intact human conduit vesselsL S Sjögren, L Gan, R Doroudi, et al.Endothelium : Journal of Endothelial Cell Research|January 18, 2006
Methodological studies of multiple reference genes as endogenous controls in vascular gene expression studiesR Doroudi, M Andersson, P-A Svensson, et al.Hypertension (Dallas, Tex. : 1979)|April 25, 2000
Elevated intraluminal pressure inhibits vascular tissue plasminogen activator secretion and downregulates its gene expressionL S Sjögren, R Doroudi, L m Gan, et al.Pageof 1