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TEMPLE UNIVERSITY
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You are viewing titles for TEMPLE UNIVERSITY in the Physiology available through the UMI Dissertations & Thesis Gradwoorks site
The role of arginase in nitric oxide mediated contractile function and survival in normal and diseased myocardium
The protective phenotype associated with exercise training on the hypertensive myocardium
Hematopoietic lineage cell-specific protein-1 (HS1) is a functionally important signaling molecule in platelet activation
Modulation of the cannabinoid CB1 and CB2 receptor activation in central nervous system disorders
Ethnic variations in body image and physical activity in women's cardiovascular health
Comparison of a low carbohydrate and calorie-restricted diet on weight loss, morphometric variables, and diet acceptability
Altered regulation of contractile reserve in failing myocardium
The effect of exercise on the cardiac phenotype of the female Spontaneously Hypertensive Rat
Cardiac stem cells generate new cardiac myocytes during normal cardiac development and pathological hypertrophy
Perfluorochemical augmented intratracheal delivery of antioxidant enzymes and genes to attenuate oxidative stress-induced lung and respiratory muscle alterations
Role of protease-activated receptors in platelet activation
Molecular mechanisms underlying differential regulation of platelet dense granule secretion by protein kinase C delta
The effects of high repetition low force motion on tendon integrity and motor behavior in an animal model of work-related musculoskeletal disorders
Molecular physiology of thromboxane A2 generation in platelets
Molecular physiology of novel class of protein kinase c isoforms in platelets
Re-expression of T-type calcium channels minimally affects cardiac contractility and activates pro-survival signaling pathways in the myocardium
Regulation of protein kinases (Syk and PKC Zeta) in platelets
Increasing myocyte contractility exacerbates cardiac injury and pump dysfunction and ablation of phosphorylation site in RyR2 at Ser-2808 has no protection against cardiac dysfunction progression after myocardial infarction
Repair of the injured adult heart involves resident cardiac stem cell derived new myocytes
In vivo and in vitro interactions of oxidative stress and laminar shear stress on vascular endothelial growth factor-mediated endothelial nitric oxide synthase activity
Does calcium influx through T-type calcium channel induce cardiomyocyte proliferation?