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Difference between revisions of "Von Stockar 1993 Biochim Biophys Acta"

From Bioblast
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|journal=Biochim Biophys Acta
|journal=Biochim Biophys Acta
|keywords=CaloRespirometry, Thermodynamics of growth, Energy balance, Enthalpy, Thermodynamic state, Thermodynamic standard state, Thermodynamic reference state, Cell growth
|keywords=CaloRespirometry, Thermodynamics of growth, Energy balance, Enthalpy, Thermodynamic state, Thermodynamic standard state, Thermodynamic reference state, Cell growth
|mipnetlab=AT Innsbruck Gnaiger E
|mipnetlab=AT Innsbruck Gnaiger E, SE Gothenburg Gustafsson L
}}
}}
{{Labeling
{{Labeling
|area=Respiration
|area=Respiration
|injuries=Ischemia-reperfusion
|injuries=Ischemia-reperfusion
|organism=Eubacteria, Fungi
|organism=Fungi, Eubacteria
|preparations=Intact organism, Intact cells
|preparations=Intact organism, Intact cells
|topics=ATP, Aerobic glycolysis, Coupling efficiency;uncoupling, Redox state, Substrate, Temperature, pH
|topics=Aerobic glycolysis, ATP, Coupling efficiency;uncoupling, pH, Redox state, Substrate, Temperature
|couplingstates=ROUTINE
|couplingstates=ROUTINE
|instruments=Theory
|instruments=Theory
}}
}}

Revision as of 16:16, 27 March 2018

Publications in the MiPMap
Von Stockar U, Gustafsson L, Larsson C, Marison I, Tissot P, Gnaiger E (1993) Thermodynamic considerations in constructing energy balances for cellular growth. Biochim Biophys Acta 1183:221-40.

Β» ScienceDirect, Bioblast pdf

Von Stockar U, Gustafsson L, Larsson C, Marison I, Tissot P, Gnaiger E (1993) Biochim Biophys Acta

Abstract: β€’ Keywords: CaloRespirometry, Thermodynamics of growth, Energy balance, Enthalpy, Thermodynamic state, Thermodynamic standard state, Thermodynamic reference state, Cell growth

β€’ O2k-Network Lab: AT Innsbruck Gnaiger E, SE Gothenburg Gustafsson L


Labels: MiParea: Respiration 

Stress:Ischemia-reperfusion  Organism: Fungi, Eubacteria 

Preparation: Intact organism, Intact cells 

Regulation: Aerobic glycolysis, ATP, Coupling efficiency;uncoupling, pH, Redox state, Substrate, Temperature  Coupling state: ROUTINE 

HRR: Theory