According ot previous studies, we may expect that slow oscillations can occur in dynamics of a parameterized family of systems in which a biochemical oscillator is coupled to a stationary systems. We introduce some numerical results that confirm our expectation. The results suggest that it is possible for slow oscillations to occur in dynamics of a system in which an active oscillatory unit is coupled to a passive medium, and that it is possible for circadian oscillations to arise from fast glycolytic oscillations in such a coupled system
The testing procedure of Yakubovich’s oscillatority property is presented. The procedure is applied ...
Circadian oscillators (CO) are biochemical pathways in which a gene expresses mRNA cyclically to cre...
<div><p>Homeostatic and adaptive control mechanisms are essential for keeping organisms structurally...
According ot previous studies, we may expect that slow oscillations can occur in dynamics of a param...
SummaryWith our growing awareness of the complexity underlying biological phenomena, our need for co...
Present models for circadian rhythm generator are not sufficient to explain all the properties of a ...
SummaryMultisite phosphorylation plays an important role in biological oscillators such as the circa...
We study a system that models a problem in which an oscillatory unit is coupled to a passive medium....
The general purpose of this paper is to build up on our understanding of the basic mathematical prin...
AbstractThree-protein circadian oscillations in cyanobacteria sustain for weeks. To understand how c...
International audienceBiological complex mechanisms with oscillatory behavior are often modeled by h...
Autonomous oscillations at the cellular level are important for various timing and signalling functi...
SummaryA circadian oscillation can be reconstituted in vitro from three proteins that cycles with a ...
Oscillations occur in a wide variety of cellular processes, for example in calcium and p53 signaling...
Homeostatic and adaptive control mechanisms are essential for keeping organisms structurally and fun...
The testing procedure of Yakubovich’s oscillatority property is presented. The procedure is applied ...
Circadian oscillators (CO) are biochemical pathways in which a gene expresses mRNA cyclically to cre...
<div><p>Homeostatic and adaptive control mechanisms are essential for keeping organisms structurally...
According ot previous studies, we may expect that slow oscillations can occur in dynamics of a param...
SummaryWith our growing awareness of the complexity underlying biological phenomena, our need for co...
Present models for circadian rhythm generator are not sufficient to explain all the properties of a ...
SummaryMultisite phosphorylation plays an important role in biological oscillators such as the circa...
We study a system that models a problem in which an oscillatory unit is coupled to a passive medium....
The general purpose of this paper is to build up on our understanding of the basic mathematical prin...
AbstractThree-protein circadian oscillations in cyanobacteria sustain for weeks. To understand how c...
International audienceBiological complex mechanisms with oscillatory behavior are often modeled by h...
Autonomous oscillations at the cellular level are important for various timing and signalling functi...
SummaryA circadian oscillation can be reconstituted in vitro from three proteins that cycles with a ...
Oscillations occur in a wide variety of cellular processes, for example in calcium and p53 signaling...
Homeostatic and adaptive control mechanisms are essential for keeping organisms structurally and fun...
The testing procedure of Yakubovich’s oscillatority property is presented. The procedure is applied ...
Circadian oscillators (CO) are biochemical pathways in which a gene expresses mRNA cyclically to cre...
<div><p>Homeostatic and adaptive control mechanisms are essential for keeping organisms structurally...