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Nature|February 14, 1985
Autonomous chaotic behaviour of the slime mould Dictyostelium discoideum predicted by a model for cyclic AMP signallingJ L Martiel, A GoldbeterExperientia|March 15, 1996
Arresting the mitotic oscillator and the control of cell proliferation: insights from a cascade model for cdc2 kinase activationA Goldbeter, J M GuilmotDifferentiation; Research in Biological Diversity|January 1, 1980
Control of developmental transitions in the cyclic AMP signalling system of Dictyostelium discoideumA Goldbeter, L A SegelBioessays : News and Reviews in Molecular, Cellular and Developmental Biology|January 29, 2000
Modeling the molecular regulatory mechanism of circadian rhythms in DrosophilaJ C Leloup, A GoldbeterAmerican Journal of Physiology. Regulatory, Integrative and Comparative Physiology|March 15, 2001
A molecular explanation for the long-term suppression of circadian rhythms by a single light pulseJ C Leloup, A GoldbeterJournal of Theoretical Biology|October 7, 1996
The glucose-induced switch between glycogen phosphorylase and glycogen synthase in the liver: outlines of a theoretical approachM L Cárdenas, A GoldbeterBiochimie|February 1, 1981
Metabolic oscillations in biochemical systems controlled by covalent enzyme modificationJ L Martiel, A GoldbeterIET Systems Biology|January 26, 2011
Modelling the dual role of Per phosphorylation and its effect on the period and phase of the mammalian circadian clockJ-C Leloup, A GoldbeterBiophysical Chemistry|October 13, 2006
From bistability to oscillations in a model for the isocitrate dehydrogenase reactionG M Guidi, A GoldbeterThe Journal of Biological Chemistry|April 5, 1987
Energy expenditure in the control of biochemical systems by covalent modificationA Goldbeter, D E KoshlandPageof 25