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Stimulation of splanchnic glucose production during exercise in humans contains a glucagon-independent component.
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Limitations to basal and insulin-stimulated skeletal muscle glucose uptake in the high-fat-fed rat.
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Hepatic alpha- and beta-adrenergic receptors are not essential for the increase in R(a) during exercise in diabetes.
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Am. J. Physiol., Dec;277(6 Pt 1):E1038-45 (1999)
Prior exercise increases net hepatic glucose uptake during a glucose load.
Am. J. Physiol., Jun;276(6 Pt 1):E1022-9 (1999)
A negative arterial-portal venous glucose gradient increases net hepatic glucose uptake in euglycemic dogs.
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Superiority of the femoral artery of monitoring. A prospective study.
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Infected false femoral artery aneurysms secondary to monitoring catheters.
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Am. J. Physiol., May;262(5 Pt 1):E574-82 (1992)
Metabolic regulation in peripheral tissues and transition to increased gluconeogenic mode during prolonged exercise.
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Effects of chronic elevation in plasma cortisol on hepatic carbohydrate metabolism.
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Relationship between arterial and portal vein immunoreactive glucagon during exercise.
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Interaction of decreased arterial PO2 and exercise on carbohydrate metabolism in the dog.
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Interaction of exercise, insulin, and hypoglycemia studied using euglycemic and hypoglycemic insulin clamps.
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Sympathetic drive to liver and nonhepatic splanchnic tissue during prolonged exercise is increased in diabetes.
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A negative arterial-portal venous glucose gradient decreases skeletal muscle glucose uptake.
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