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The American Journal of Physiology|November 1, 1991
Glucose transporter number, activity, and isoform content in plasma membranes of red and white skeletal muscleL J Goodyear, M F Hirshman, R J Smith, et al.Circulation|October 3, 2001
Increased adenosine monophosphate-activated protein kinase activity in rat hearts with pressure-overload hypertrophyR Tian, N Musi, J D'Agostino, et al.The Journal of Clinical Investigation|October 1, 1992
Insulin resistance in obese Zucker rat (fa/fa) skeletal muscle is associated with a failure of glucose transporter translocationP A King, E D Horton, M F Hirshman, et al.Diabetes|September 1, 1992
Glucose transporter number, function, and subcellular distribution in rat skeletal muscle after exercise trainingL J Goodyear, M F Hirshman, P M Valyou, et al.The American Journal of Physiology|December 1, 1989
Glucose transport in skeletal muscle membrane vesicles from control and exercised ratsP A King, M F Hirshman, E D Horton, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|January 1, 1992
Effect of exercise training and chronic glyburide treatment on glucose homeostasis in diabetic ratsL J Goodyear, M F Hirshman, E D Horton, et al.Diabetes|July 30, 1999
5' AMP-activated protein kinase activation causes GLUT4 translocation in skeletal muscleE J Kurth-Kraczek, M F Hirshman, L J Goodyear, et al.American Journal of Physiology. Cell Physiology|February 24, 2001
Static stretch increases c-Jun NH2-terminal kinase activity and p38 phosphorylation in rat skeletal muscleM D Boppart, M F Hirshman, K Sakamoto, et al.Diabetes|August 14, 1998
Evidence for 5' AMP-activated protein kinase mediation of the effect of muscle contraction on glucose transportT Hayashi, M F Hirshman, E J Kurth, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|August 1, 1988
Effect of exercise training on glucose homeostasis in normal and insulin-deficient diabetic ratsL J Goodyear, M F Hirshman, S M Knutson, et al.Pageof 5