AbstractIt has hitherto not been possible to analyze the control of oscillatory dynamic cellular processes in other than qualitative ways. The control coefficients, used in metabolic control analyses of steady states, cannot be applied directly to dynamic systems. We here illustrate a way out of this limitation that uses Fourier transforms to convert the time domain into the stationary frequency domain, and then analyses the control of limit cycle oscillations. In addition to the already known summation theorems for frequency and amplitude, we reveal summation theorems that apply to the control of average value, waveform, and phase differences of the oscillations. The approach is made fully operational in an analysis of yeast glycolytic osc...
Homeostatic and adaptive control mechanisms are essential for keeping organisms structurally and fun...
In this paper I shall discuss, in a general way, some basic dynamical properties of biochemical reac...
Complex network dynamics have been analyzed with models of systems of coupled switches or systems of...
AbstractThe three main existing models for glycolytic oscillations in yeast were re-examined to inve...
Biochemical oscillations, such as glycolytic oscillations, are often believed to be caused by a sing...
201-208The yeast Saccharomyces cerevisiae exhibits sustained oscillations under noise-free controlle...
Metabolic response coefficients describe how variables in metabolic systems, like steady state conce...
The role of enzyme co-operativity in the mechanism of metabolic periodicities is analyzed quantitati...
International audienceWe consider a generic biological process described by a dynamical system, subj...
Oscillations are widely distributed in nature and synchronization of oscillators has been described ...
Biochemical networks consist of highly interconnected dynamic systems of chemical reaction represent...
We describe a mechanism for pronounced biochemical oscillations, relevant to microscopic systems, su...
Homeostatic and adaptive control mechanisms are essential for keeping organisms structurally and fun...
AbstractOf all the lifeforms that obtain their energy from glycolysis, yeast cells are among the mos...
When yeast cells are grown continuously at high cell density, a respiratory oscillation percolates t...
Homeostatic and adaptive control mechanisms are essential for keeping organisms structurally and fun...
In this paper I shall discuss, in a general way, some basic dynamical properties of biochemical reac...
Complex network dynamics have been analyzed with models of systems of coupled switches or systems of...
AbstractThe three main existing models for glycolytic oscillations in yeast were re-examined to inve...
Biochemical oscillations, such as glycolytic oscillations, are often believed to be caused by a sing...
201-208The yeast Saccharomyces cerevisiae exhibits sustained oscillations under noise-free controlle...
Metabolic response coefficients describe how variables in metabolic systems, like steady state conce...
The role of enzyme co-operativity in the mechanism of metabolic periodicities is analyzed quantitati...
International audienceWe consider a generic biological process described by a dynamical system, subj...
Oscillations are widely distributed in nature and synchronization of oscillators has been described ...
Biochemical networks consist of highly interconnected dynamic systems of chemical reaction represent...
We describe a mechanism for pronounced biochemical oscillations, relevant to microscopic systems, su...
Homeostatic and adaptive control mechanisms are essential for keeping organisms structurally and fun...
AbstractOf all the lifeforms that obtain their energy from glycolysis, yeast cells are among the mos...
When yeast cells are grown continuously at high cell density, a respiratory oscillation percolates t...
Homeostatic and adaptive control mechanisms are essential for keeping organisms structurally and fun...
In this paper I shall discuss, in a general way, some basic dynamical properties of biochemical reac...
Complex network dynamics have been analyzed with models of systems of coupled switches or systems of...