Analysis of metabolic control: new insights using scaled creatine kinase model.
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Summary
It is demonstrated that unique identification of a hypothesis describing the recruitment of O2 uptake requires testing at several pH values, and the stability of the tissue parameters to the equations is applied.
- Type
- article
- Published
- 1988-06-01
- Cited by
- 128
- References
- 0
- OpenAlex
- https://openalex.org/W2837918
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25895395
Keywords
Spectrometer, Internal conversion, Magnet, RADIUS, Physics
References
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Cited by
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- Mitochondrial adaptations in insulin resistant muscle
- Does energy demand have an additional control in ischemia or are current models of metabolic control adequate at extremes?
- Cross-species studies of glycolytic function.
- Bioenergetics and muscle cell types.
- Cellular Bioenergetics: Role of Coupled Creatine Kinases
- The effect of creatine supplementation on myocardial metabolism and function in sedentary and exercised rats
- Phosphocreatine hydrolysis during submaximal exercise: the effect of FIO2.
- A theoretical model of some spatial and temporal aspects of the mitochondrion creatine kinase myofibril system in muscle
- Metabolic Changes in Early Poststatus Epilepticus Measured by MR Spectroscopy in Rats
- Phosphorus metabolite distribution in skeletal muscle: Quantitative bioenergetics using creatine analogs
- Creatine supplementation increases glucose oxidation and AMPK phosphorylation and reduces lactate production in L6 rat skeletal muscle cells
- Intracellular energetic units in healthy and diseased hearts.
- Defining hypoxia: a systems view of VO2, glycolysis, energetics, and intracellular PO2.
- Integrating metabolic pathways in post-exercise recovery of white muscle.
- Whole body exposure to low frequency magnetic field: No provable effects on the cellular energetics of rat skeletal muscle
- Eco-physiological phases of insect diapause.
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