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N B Ruderman

Showing results (81-90 of 135) with videos related to

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The American Journal of Physiology|June 1, 1984
Enhanced muscle glucose metabolism after exercise in the rat: the two phasesL P Garetto, E A Richter, M N Goodman, et al.
The American Journal of Physiology|July 1, 1994
Lipid abnormalities in tissues of the KKAy mouse: effects of pioglitazone on malonyl-CoA and diacylglycerolA K Saha, T G Kurowski, J R Colca, et al.
The American Journal of Physiology|June 1, 1984
Enhanced muscle glucose metabolism after exercise: modulation by local factorsE A Richter, L P Garetto, M N Goodman, et al.
Diabetologia|May 1, 1984
Studies on the mechanism of improved glucose control during regular exercise in type 2 (non-insulin-dependent) diabetesS H Schneider, L F Amorosa, A K Khachadurian, et al.
The Journal of Clinical Investigation|April 1, 1982
Muscle glucose metabolism following exercise in the rat: increased sensitivity to insulinE A Richter, L P Garetto, M N Goodman, et al.
The American Journal of Physiology|January 1, 1982
Muscle glycogenolysis during exercise: dual control by epinephrine and contractionsE A Richter, N B Ruderman, H Gavras, et al.
The American Journal of Physiology|November 1, 1993
Differential effect of metabolic fuels on the energy state and Na(+)-K(+)-ATPase in isolated cerebral microvesselsI Sussman, V Schultz, S Gupta, et al.
The American Journal of Physiology|October 1, 1993
Reduced Na(+)-K+ pump activity in diabetic rabbit carotid artery: reversal by aldose reductase inhibitionB Tesfamariam, S Gupta, P J Oates, et al.
American Journal of Physiology. Endocrinology and Metabolism|July 27, 2000
Malonyl-CoA content and fatty acid oxidation in rat muscle and liver in vivoD Chien, D Dean, A K Saha, et al.
Diabetes|July 26, 2000
Fatty acid oxidation and the regulation of malonyl-CoA in human muscleP N Båvenholm, J Pigon, A K Saha, et al.
Pageof 14

Showing results (81-90 of 135) with videos related to

Sort By:
Pageof 14
The American Journal of Physiology|June 1, 1984
Enhanced muscle glucose metabolism after exercise in the rat: the two phasesL P Garetto, E A Richter, M N Goodman, et al.
The American Journal of Physiology|July 1, 1994
Lipid abnormalities in tissues of the KKAy mouse: effects of pioglitazone on malonyl-CoA and diacylglycerolA K Saha, T G Kurowski, J R Colca, et al.
The American Journal of Physiology|June 1, 1984
Enhanced muscle glucose metabolism after exercise: modulation by local factorsE A Richter, L P Garetto, M N Goodman, et al.
Diabetologia|May 1, 1984
Studies on the mechanism of improved glucose control during regular exercise in type 2 (non-insulin-dependent) diabetesS H Schneider, L F Amorosa, A K Khachadurian, et al.
The Journal of Clinical Investigation|April 1, 1982
Muscle glucose metabolism following exercise in the rat: increased sensitivity to insulinE A Richter, L P Garetto, M N Goodman, et al.
The American Journal of Physiology|January 1, 1982
Muscle glycogenolysis during exercise: dual control by epinephrine and contractionsE A Richter, N B Ruderman, H Gavras, et al.
The American Journal of Physiology|November 1, 1993
Differential effect of metabolic fuels on the energy state and Na(+)-K(+)-ATPase in isolated cerebral microvesselsI Sussman, V Schultz, S Gupta, et al.
The American Journal of Physiology|October 1, 1993
Reduced Na(+)-K+ pump activity in diabetic rabbit carotid artery: reversal by aldose reductase inhibitionB Tesfamariam, S Gupta, P J Oates, et al.
American Journal of Physiology. Endocrinology and Metabolism|July 27, 2000
Malonyl-CoA content and fatty acid oxidation in rat muscle and liver in vivoD Chien, D Dean, A K Saha, et al.
Diabetes|July 26, 2000
Fatty acid oxidation and the regulation of malonyl-CoA in human muscleP N Båvenholm, J Pigon, A K Saha, et al.
Pageof 14