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Chemical energetics of slow- and fast-twitch muscles of the mouse.

The Journal of General Physiology · 1982 · Vol. 79(1) · pp. 147–166
Michael T. CrowMartin J. Kushmerick

Abstract

The energy utilization associated with contraction was measured in isolated slow- and fast-twitch muscles of the mouse at 20 degrees C. The extent of this utilization was estimated from either the extent of high-energy phosphate splitting occurring during contraction (the initial chemical change, delta approximately P init) or from the extent of recovery resynthesis calculated from the observed oxygen consumption and lactate production occurring during the recovery period (recovery chemical resynthesis, delta approximately P rec). For short tetani, the cost to maintain isometric tension in the fast-twitch extensor digitorum longus (EDL) was approximately threefold greater than that in the slow-twitch soleus. With prolonged stimulation, however, the energy cost in the EDL diminished so that after 12 s of stimulation, the energy cost in the EDL was only 50% greater than that of the soleus. For both the slow-twitch soleus and the fast-twitch EDL and for all tetanus durations (up to 15 s), the extent of the initial chemical change was identical with the amount of recovery chemical resynthesis, showing that a biochemical energy balance existed in these muscles.

Pharmacological Effects and AssaysCardiomyopathy and Myosin StudiesMuscle activation and electromyography studiesIsometric exerciseChemistryStimulationEnergy costBiophysicsContraction (grammar)EnergeticsSoleus muscleOxygenPhosphocreatine

MeSH terms

Adenosine TriphosphateAnimalsCold TemperatureEnergy MetabolismMaleMathematicsMuscle ContractionMusclesOxygen ConsumptionMiceIn Vitro Techniques

Funding

  • Muscular Dystrophy Association
Citations
554
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References
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Journal of Biological Chemistry · 1951 · 317,666 citations
THE SPECIFICITY OF THE HISTOCHEMICAL METHOD FOR ADENOSINE TRIPHOSPHATAS
Journal of Histochemistry & Cytochemistry · 1955 · 1,218 citations
ATPase Activity of Myosin Correlated with Speed of Muscle Shortening
The Journal of General Physiology · 1967 · 1,977 citations
Histochemical, biochemical, and contractile properties of red, white, and intermediate fibers
American Journal of Physiology-Legacy Content · 1971 · 408 citations
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Chemical energetics of slow- and fast-twitch muscles of the mouse. · Scinovex