Showing results (31-40 of 57) with videos related to
Sort By:
Pageof 6
Circulation|September 9, 2004
Effectiveness of beta-blockade in experimental chronic aortic regurgitationEric Plante, Dominic Lachance, Martin Gaudreau, et al.Life Sciences|December 25, 2007
Early responses of the left ventricle to pressure overload in Wistar ratsElise Roussel, Martin Gaudreau, Eric Plante, et al.American Journal of Physiology. Heart and Circulatory Physiology|December 30, 2008
Gene profiling of left ventricle eccentric hypertrophy in aortic regurgitation in rats: rationale for targeting the beta-adrenergic and renin-angiotensin systemsSerge Champetier, Azadeh Bojmehrani, Jonathan Beaudoin, et al.Medicine and Science in Sports and Exercise|May 23, 2009
Effects of exercise in volume overload: insights from a model of aortic regurgitationDominic Lachance, Serge Champetier, Eric Plante, et al.Peerj|August 13, 2019
Sex differences in the response to angiotensin II receptor blockade in a rat model of eccentric cardiac hypertrophyÉlisabeth Walsh-Wilkinson, Marie-Claude Drolet, Charlie Le Houillier, et al.Biomolecules|August 29, 2024
Plasma and Myocardial miRNomes Similarities and Differences during Cardiac Remodelling and Reverse Remodelling in a Murine Model of Heart Failure with Preserved Ejection FractionSara-Ève Thibodeau, Emylie-Ann Labbé, Élisabeth Walsh-Wilkinson, et al.Peerj|May 27, 2024
A murine model of hypertensive heart disease in older womenAudrey Morin-Grandmont, Elisabeth Walsh-Wilkinson, Sara-Ève Thibodeau, et al.Canadian Journal of Physiology and Pharmacology|March 31, 2004
Angiotensin-converting enzyme inhibitor captopril prevents volume overload cardiomyopathy in experimental chronic aortic valve regurgitationEric Plante, Martin Gaudreau, Dominic Lachance, et al.Circulation. Heart Failure|October 8, 2009
Moderate exercise training improves survival and ventricular remodeling in an animal model of left ventricular volume overloadDominic Lachance, Eric Plante, Andrée-Anne Bouchard-Thomassin, et al.Plos One|May 12, 2016
Ablation of Potassium-Chloride Cotransporter Type 3 (Kcc3) in Mouse Causes Multiple Cardiovascular Defects and Isosmotic PolyuriaAlexandre P Garneau, Andrée-Anne Marcoux, Micheline Noël, et al.Pageof 6