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Biochemistry. Biokhimiia|May 9, 2002
Simplest kinetic schemes for biochemical oscillatorsG L Ermakov, B N GoldsteinBiochemistry. Biokhimiia|June 1, 1997
Kinetic manifestations of structural self-organization for the components of the pyruvate dehydrogenase complex. A mathematical modelG L Ermakov, B N GoldsteinBiochemistry. Biokhimiia|April 17, 1999
A model for the spatial location of pyruvate dehydrogenase phosphatase in mammalian pyruvate dehydrogenase complexG L Ermakov, B N GoldsteinBiochemistry. Biokhimiia|April 17, 1999
Regulation of pyruvate dehydrogenase complex activity in Ehrlich ascites carcinoma cells by Ca2+ and pyruvateG L Ermakov, L P Dolgacheva, B N Goldstein, et al.Biochemistry. Biokhimiia|November 18, 2003
A theoretical graph method for search and analysis of critical phenomena in biochemical systems. I. Graphical rules for detecting oscillatorsG L ErmakovBiochemistry. Biokhimiia|November 18, 2003
A theoretical graph method for search and analysis of critical phenomena in biochemical systems. II. Kinetic models of biochemical oscillators including two and three substancesG L ErmakovBiokhimiia (Moscow, Russia)|April 1, 1995
[Supramolecular organization of erythrocyte glycolysis. I. Composition of the cytoplasm]G L ErmakovBiokhimiia (Moscow, Russia)|April 1, 1995
[Supramolecular organization of erythrocyte glycolysis. II. Viscosity of the cytoplasm]G L ErmakovBiokhimiia (Moscow, Russia)|May 1, 1993
[Supermolecular organization of enzyme systems. I. The structural aspect of the problem]G L ErmakovJournal of Theoretical Biology|July 21, 1983
Analysis of cyclic enzyme reaction schemes by the graph-theoretic methodB N GoldsteinPageof 3