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Difference between revisions of "Gnaiger 1992 Funct Ecol"

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(Created page with "{{Publication |title=Gnaiger E (1992) Optimum efficiency of energy transformation and the evolution of catabolic pathways. Functional Ecology 6: 234-241. |authors=Gnaiger E |yea...")
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{{Publication
{{Publication
|title=Gnaiger E (1992) Optimum efficiency of energy transformation and the evolution of catabolic pathways. Functional Ecology 6: 234-241.
|title=Gnaiger E (1992) Optimum efficiency of energy transformation and the evolution of catabolic pathways. Funct Ecol 6:234-41.
|authors=Gnaiger E
|info=[[Media:Gnaiger 1992 Funct Ecol.pdf|'''Bioblast Access''']]
|authors=Gnaiger Erich
|year=1992
|year=1992
|journal=Functional Ecology
|journal=Functional Ecology
|mipnetlab=AT_Innsbruck_GnaigerE
|mipnetlab=AT Innsbruck Gnaiger E
|discipline=Mitochondrial Physiology
}}
}}
{{Labeling
{{Labeling
|area=Respiration, Comparative MiP;environmental MiP, Exercise physiology;nutrition;life style
|injuries=Ischemia-reperfusion
|organism=Rat
|tissues=Liver
|preparations=Isolated mitochondria
|topics=Aerobic glycolysis, ADP, Coupling efficiency;uncoupling, Flux control
|couplingstates=ROUTINE, OXPHOS
|instruments=Oxygraph-2k, Theory
|instruments=Oxygraph-2k, Theory
|discipline=Mitochondrial Physiology
|discipline=Mitochondrial Physiology
|organism=Rat
|tissues=Hepatocyte; Liver
|preparations=Isolated Mitochondria
|kinetics=ADP; Pi
|topics=Respiration; OXPHOS; ETS Capacity, Aerobic and Anaerobic Metabolism, ATP; ADP; AMP; PCr
}}
}}

Latest revision as of 04:43, 23 November 2021

Publications in the MiPMap
Gnaiger E (1992) Optimum efficiency of energy transformation and the evolution of catabolic pathways. Funct Ecol 6:234-41.

Β» Bioblast Access

Gnaiger Erich (1992) Functional Ecology

Abstract:


β€’ O2k-Network Lab: AT Innsbruck Gnaiger E


Labels: MiParea: Respiration, Comparative MiP;environmental MiP, Exercise physiology;nutrition;life style 

Stress:Ischemia-reperfusion  Organism: Rat  Tissue;cell: Liver  Preparation: Isolated mitochondria 

Regulation: Aerobic glycolysis, ADP, Coupling efficiency;uncoupling, Flux control  Coupling state: ROUTINE, OXPHOS 

HRR: Oxygraph-2k, Theory