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Journal of Applied Physiology (Bethesda, Md. : 1985)|January 1, 1997
Evidence that nitric oxide increases glucose transport in skeletal muscleT W Balon, J L NadlerJournal of Applied Physiology (Bethesda, Md. : 1985)|December 1, 1994
Nitric oxide release is present from incubated skeletal muscle preparationsT W Balon, J L NadlerThe American Journal of Physiology|October 1, 1995
Magnesium supplementation reduces development of diabetes in a rat model of spontaneous NIDDMT W Balon, J L Gu, Y Tokuyama, et al.Hypertension (Dallas, Tex. : 1979)|June 1, 1994
Dietary magnesium prevents fructose-induced insulin insensitivity in ratsT W Balon, A Jasman, S Scott, et al.Advances in Experimental Medicine and Biology|October 22, 1998
Role of nitric oxide in contraction induced glucose transportT W BalonJournal of Applied Physiology (Bethesda, Md. : 1985)|April 1, 1991
Effects of prior exercise on the thermic effect of glucose and fructoseT W Balon, G J WelkMedicine and Science in Sports and Exercise|March 17, 2001
Redox regulation of skeletal muscle glucose transportT W Balon, K K YerneniBiochemical and Biophysical Research Communications|May 16, 2001
Acute exposure to AICAR increases glucose transport in mouse EDL and soleus muscleT W Balon, A P JasmanLife Sciences|January 1, 1997
Role of dihydropyridine sensitive calcium channels in glucose transport in skeletal muscleJ C Young, T W BalonNitric Oxide : Biology and Chemistry|August 13, 1999
Effects of chronic N(omega)-nitro-L-arginine methyl ester administration on glucose tolerance and skeletal muscle glucose transport in the ratT W Balon, A P Jasman, J C YoungPageof 11