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Microvascular Research|June 21, 2002
Chronic hydralazine improves flow (shear stress)-induced endothelium-dependent dilation in mouse mesenteric resistance arteries in vitroDiane Gorny, Laurent Loufrani, Nathalie Kubis, et al.Vascular Pharmacology|April 10, 2012
Flow (shear stress)-mediated remodeling of resistance arteries in diabetesEmilie Vessières, Mohamed L Freidja, Laurent Loufrani, et al.Hypertension (Dallas, Tex. : 1979)|April 20, 2005
Involvement of RhoA/Rho kinase pathway in myogenic tone in the rabbit facial veinCaroline Dubroca, Dong You, Bernard I Lévy, et al.Biochemical and Biophysical Research Communications|April 13, 2010
Vimentin expression influences flow dependent VASP phosphorylation and regulates cell migration and proliferationNatalie Lund, Daniel Henrion, Petra Tiede, et al.Diabetes|March 15, 2012
The AGE-breaker ALT-711 restores high blood flow-dependent remodeling in mesenteric resistance arteries in a rat model of type 2 diabetesMohamed L Freidja, Kahena Tarhouni, Bertrand Toutain, et al.Cardiovascular Research|November 17, 2007
Alteration in flow (shear stress)-induced remodelling in rat resistance arteries with aging: improvement by a treatment with hydralazineOdile Dumont, Frederic Pinaud, Anne-Laure Guihot, et al.Microvascular Research|September 28, 2014
Optimisation of movement detection and artifact removal during laser speckle contrast imagingLoukman Omarjee, Isabelle Signolet, Anne Humeau-Heutier, et al.Circulation Research|April 20, 2002
Smooth muscle dysfunction in resistance arteries of the staggerer mouse, a mutant of the nuclear receptor RORalphaSandrine Besnard, Joëlle Bakouche, Yolande Lemaigre-Dubreuil, et al.Arteriosclerosis, Thrombosis, and Vascular Biology|April 28, 2012
Endoplasmic reticulum stress is involved in cardiac damage and vascular endothelial dysfunction in hypertensive miceModar Kassan, Maria Galán, Megan Partyka, et al.International Journal of Cardiology|June 12, 2018
Iron deficiency without anemia is responsible for decreased left ventricular function and reduced mitochondrial complex I activity in a mouse modelEmmanuel Rineau, Thomas Gaillard, Naïg Gueguen, et al.Pageof 21