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Sustained function of normoxic hearts depleted in ATP and phosphocreatine: a 31P-NMR study

Data up to Jan 2025

Published1988
Citations74
References13

Total Citations Per Year

Abstract

References (13)

The effects of inorganic phosphate and creatine phosphate on force production in skinned muscles from rat ventricle.

1986 • 343 citations

Mechanical relaxation rate and metabolism studied in fatiguing muscle by phosphorus nuclear magnetic resonance.

1980 • 330 citations

Functional compartmentation of ATP and creatine phosphate in heart muscle

1970 • 301 citations

Studies of Tissue Permeability

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A nuclear magnetic resonance study of metabolism in the ferret heart during hypoxia and inhibition of glycolysis.

1985 • 264 citations

Respiratory Control and the Integration of Heart High-Energy Phosphate Metabolism by Mitochondrial Creatine Kinase

1985 • 241 citations

Activity of phosphorylase in total global ischaemia in the rat heart A phosphorus-31 nuclear-magnetic-resonance study

1981 • 193 citations

Role of creatine kinase in force development in chemically skinned rat cardiac muscle.

1987 • 90 citations

Creatine kinase in regulation of heart function and metabolism. I. Further evidence for compartmentation of adenine nucleotides in cardiac myofibrillar and sarcolemmal coupled ATPase-creatine kinase systems

1984 • 82 citations

A phosphorus-31 nuclear magnetic resonance study of the metabolic, contractile, and ionic consequences of induced calcium alterations in the isovolumic rat heart.

1986 • 70 citations

Theoretical support for the heart phosphocreatine energy transport shuttle based on the intracellular diffusion limited mobility of ADP

1985 • 67 citations

Dissociation of adenosine triphosphate levels and contractilefunction in isovolumic hearts perfused with 2-deoxyglucose

1987 • 42 citations

Electrical and mechanical activities of frog heart during energetic deficiency

1980 • 24 citations

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Sustained function of normoxic hearts depleted in ATP and phosphocreatine: a 31P-NMR study (1988) – AJP Cell Physiology | Metascience Observatory Explorer