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Ion Transport in Mitochondria
E. J. Harris
, J. D. Judah
,
K. Ahmed
Laboratory Medicine and Pathology
Research output
:
Contribution to journal
›
Article
›
peer-review
14
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Scopus citations
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Keyphrases
Mitochondria
100%
Ion Transport
100%
K+ Uptake
100%
Mitochondrium
100%
Anions
36%
Divalent Cations
36%
Energy Sources
18%
Concentration Gradient
18%
Rat Liver Mitochondria
18%
Cation Transport
18%
Nitrate
9%
Potassium
9%
Ca2+
9%
Antibiotics
9%
Active Transport
9%
Phosphate
9%
Respiration
9%
Acetate
9%
Low Dose Rate
9%
Whole Cell
9%
Na +
9%
Membrane Potential
9%
K+ Concentration
9%
Mg2+
9%
Oligomycin
9%
Substrate Oxidation
9%
Two-mode
9%
Mn2+
9%
Specific Properties
9%
Oxidative Phosphorylation (OXPHOS)
9%
Active Processes
9%
Isolated Mitochondria
9%
ATP Synthesis
9%
H+ Exchange
9%
Cardiac Glycosides
9%
Valinomycin
9%
Internal Concentration
9%
Chloride-sulfate
9%
K Concentration
9%
Photometric Analysis
9%
Inhibitor Study
9%
Sr2+
9%
Phosphorylated Intermediate
9%
Material Forming
9%
Cation Uptake
9%
Electrode Method
9%
Centrifugal Method
9%
Energy-dependent
9%
Cation Transfer
9%
Medicine and Dentistry
Mitochondrion
100%
Ion Transport
100%
Potassium Ion
100%
Divalent Cation
25%
Cation Transport
18%
Adenosine Triphosphate
18%
Liver Mitochondrion
12%
Calcium Ion
6%
Potassium Transport
6%
Acetic Acid
6%
Sodium Ion
6%
Magnesium Ion
6%
Cardiac Glycoside
6%
Oligomycin
6%
Valinomycin
6%
Active Transport
6%
Sulfate
6%
Strophanthin
6%
Membrane Potential
6%
Oxidative Phosphorylation
6%
Whole Cell
6%
Neuroscience
Mitochondrion
100%
Ion Transport
100%
Adenosine Triphosphate
50%
Cation Transport
50%
Membrane Potential
16%
Acetate
16%
Oligomycin
16%
Oxidative Phosphorylation
16%
Active Transport
16%
Cardiac Glycoside
16%
Potassium Transport
16%
Strophanthin
16%
Earth and Planetary Sciences
Mitochondrion
100%
Adenosine Triphosphate
50%
Material Form
16%
Chemical Engineering
Adenosine Triphosphate
100%
Glycoside
33%