Feedback is both a pillar of control theory and a pervasive principle of nature. For this reason, control-theoretic methods are powerful to analyse the dynamic behaviour of biological systems and mathematically explain their properties, as well as to engineer biological systems so that they perform a specific task by design. This paper illustrates the relevance of control-theoretic methods for biological systems. The first part gives an overview of biological control and of the versatile ways in which cells use feedback. By employing control-theoretic methods, the complexity of interlaced feedback loops in the cell can be revealed and explained, and layered feedback loops can be designed in the cell to induce the desired behaviours, such as...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Feedback is both a pillar of control theory and a pervasive principle of nature. For this reason, co...
Feedback is both a pillar of control theory and a pervasive principle of nature. For this reason, co...
This dissertation analyzes the dynamics of the individual components in two specific biological netw...
This dissertation analyzes the dynamics of the individual components in two specific biological netw...
Living cells are made up of networks of interacting genes, proteins and other bio-molecules. Simple ...
A mathematical understanding of regulation, and, in particular, the role of feedback, has been centr...
Abstract Mathematical modelling is routinely used in Systems Biology to understand the mechanisms c...
A mathematical understanding of regulation, and, in particular, the role of feedback, has been centr...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Biochemical networks consist of highly interconnected dynamic systems of chemical reaction represent...
Control theory has been instrumental for the development of a number of engineering systems, includi...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Feedback is both a pillar of control theory and a pervasive principle of nature. For this reason, co...
Feedback is both a pillar of control theory and a pervasive principle of nature. For this reason, co...
This dissertation analyzes the dynamics of the individual components in two specific biological netw...
This dissertation analyzes the dynamics of the individual components in two specific biological netw...
Living cells are made up of networks of interacting genes, proteins and other bio-molecules. Simple ...
A mathematical understanding of regulation, and, in particular, the role of feedback, has been centr...
Abstract Mathematical modelling is routinely used in Systems Biology to understand the mechanisms c...
A mathematical understanding of regulation, and, in particular, the role of feedback, has been centr...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Biochemical networks consist of highly interconnected dynamic systems of chemical reaction represent...
Control theory has been instrumental for the development of a number of engineering systems, includi...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...
Systems biology applies quantitative, mechanistic modelling to study genetic networks, signal transd...