The complexity of biological models makes methods for their analysis and understanding highly desirable. Here, we demonstrate the orchestration of various novel coarse-graining methods by applying them to the mitotic spindle assembly checkpoint. We begin with a detailed fine-grained spatial model in which individual molecules are simulated moving and reacting in a three-dimensional space. A sequence of manual and automatic coarse-grainings finally leads to the coarsest deterministic and stochastic models containing only four molecular species and four states for each kinetochore, respectively. We are able to relate each more coarse-grained level to a finer one, which allows us to relate model parameters between coarse-grainings and which pr...
AbstractRecent technological and theoretical advances are only now allowing the simulation of detail...
This thesis is devoted to study the mechanical aspects of mitotic cell divisions in mammalian and ye...
International audienceIn the last decades, logical or discrete models have emerged as a successful p...
Acknowledgements: This work has been financially supported by the European Union through funding und...
Simulating biological systems in-silico has become a common method to provide deeper insights into t...
The molecular machinery of life is largely created via self-organisation of individual molecules int...
Computational modeling of biological systems is challenging because of the multitude of spatial and ...
The eukaryotic cell cycle is a tightly regulated sequence of processes leading from cell growth over...
A common problem in the analysis of biological systems is the combinatorial explosion that emerges f...
We introduce a Stochastic Reaction-Diffusion-Dynamics Model (SRDDM) for simulations of cellular mech...
Advances in experimental and computational techniques allow us to study the structure and dynamics o...
Cell biology is immensely complex. To understand how cells work, we try to find patterns and suggest...
The mechanisms by which the mammalian mitotic spindle is guided to a predefined orientation through ...
Diverse scientific disciplines ranging from materials science to catalysis to biomolecular dynamics ...
Precise regulation of cell cycle events by the Cdk-control network is essential for cell proliferati...
AbstractRecent technological and theoretical advances are only now allowing the simulation of detail...
This thesis is devoted to study the mechanical aspects of mitotic cell divisions in mammalian and ye...
International audienceIn the last decades, logical or discrete models have emerged as a successful p...
Acknowledgements: This work has been financially supported by the European Union through funding und...
Simulating biological systems in-silico has become a common method to provide deeper insights into t...
The molecular machinery of life is largely created via self-organisation of individual molecules int...
Computational modeling of biological systems is challenging because of the multitude of spatial and ...
The eukaryotic cell cycle is a tightly regulated sequence of processes leading from cell growth over...
A common problem in the analysis of biological systems is the combinatorial explosion that emerges f...
We introduce a Stochastic Reaction-Diffusion-Dynamics Model (SRDDM) for simulations of cellular mech...
Advances in experimental and computational techniques allow us to study the structure and dynamics o...
Cell biology is immensely complex. To understand how cells work, we try to find patterns and suggest...
The mechanisms by which the mammalian mitotic spindle is guided to a predefined orientation through ...
Diverse scientific disciplines ranging from materials science to catalysis to biomolecular dynamics ...
Precise regulation of cell cycle events by the Cdk-control network is essential for cell proliferati...
AbstractRecent technological and theoretical advances are only now allowing the simulation of detail...
This thesis is devoted to study the mechanical aspects of mitotic cell divisions in mammalian and ye...
International audienceIn the last decades, logical or discrete models have emerged as a successful p...