Theoretical molecular biologists attempt to describe cellular processes and regulatory networks with continuous and discrete mathematical models. Previous practice has been to develop models largely by hand and then to validate them primarily by comparing time-series plots versus the observed experimental results. The authors report their experiences in designing and building a modeling support environment for cell cycle models. They describe improvements to the development process for molecular network models by (a) identifying the key elements of the existing modeling process, (b) incorporating simulation methodology into a revised modeling process, and (c) building and testing software that supports the revised modeling process
The development process for biochemical network models follows the traditional pipeline: Biochemical...
Biological functions require a coherent cross talk among multiple layers of regulation within the ce...
Cell cycle, which comprises an ordered sequence of phases (G1, S, G2, and M) that leads to growth an...
Biological pathway modelers attempt to describe cellular processes and regulatory networks with cont...
The eukaryotic cell cycle is robustly designed, with interacting molecules organized within a defini...
In this essay we illustrate some general principles of mathematical modeling in biology by our exper...
In this essay we illustrate some general principles of mathematical modeling in biology by our exper...
The eukaryotic cell cycle is robustly designed, with interacting molecules organized within a defini...
Cellular regulation comprises overwhelmingly complex interactions between genes and proteins that ul...
The main goal of this thesis was to investigate possible computational approaches useful to study th...
The mammalian cell cycle is regulated by a well-studied but complex biochemical reaction system. Com...
Science is an iterative process of experiments and hypotheses. Experiments produce surprising result...
Cell cycle and its progression play a crucial role in the life of all living organisms, in tissues a...
For a system-level understanding of living cells, a quantitative representation of these systems inv...
The content of the thesis is a description of intracellular processes responsible for cell cycle reg...
The development process for biochemical network models follows the traditional pipeline: Biochemical...
Biological functions require a coherent cross talk among multiple layers of regulation within the ce...
Cell cycle, which comprises an ordered sequence of phases (G1, S, G2, and M) that leads to growth an...
Biological pathway modelers attempt to describe cellular processes and regulatory networks with cont...
The eukaryotic cell cycle is robustly designed, with interacting molecules organized within a defini...
In this essay we illustrate some general principles of mathematical modeling in biology by our exper...
In this essay we illustrate some general principles of mathematical modeling in biology by our exper...
The eukaryotic cell cycle is robustly designed, with interacting molecules organized within a defini...
Cellular regulation comprises overwhelmingly complex interactions between genes and proteins that ul...
The main goal of this thesis was to investigate possible computational approaches useful to study th...
The mammalian cell cycle is regulated by a well-studied but complex biochemical reaction system. Com...
Science is an iterative process of experiments and hypotheses. Experiments produce surprising result...
Cell cycle and its progression play a crucial role in the life of all living organisms, in tissues a...
For a system-level understanding of living cells, a quantitative representation of these systems inv...
The content of the thesis is a description of intracellular processes responsible for cell cycle reg...
The development process for biochemical network models follows the traditional pipeline: Biochemical...
Biological functions require a coherent cross talk among multiple layers of regulation within the ce...
Cell cycle, which comprises an ordered sequence of phases (G1, S, G2, and M) that leads to growth an...