Reverse engineering is the problem of inferring the structure of a network of interactions between biological variables from a set of observations. In this paper, we propose an optimization algorithm, called MORE, for the reverse engineering of biological networks from time series data. The model inferred by MORE is a sparse system of nonlinear differential equations, complex enough to realistically describe the dynamics of a biological system. MORE tackles separately the discrete component of the problem, the determination of the biological network topology, and the continuous component of the problem, the strength of the interactions. This approach allows us both to enforce system sparsity, by globally constraining the number of edges, an...
Reverse engineering of biochemical networks remains an important open challenge in computational sys...
Reconstruction of biochemical reaction networks is a central topic in systems biology which raises c...
Background Current research in network reverse engineering for genetic or metabolic networks very of...
Reverse engineering is the problem of inferring the structure of a network of interactions between b...
Background: Determining the interaction topology of biological systems is a topic that currently at...
International audienceWe propose a method employing mathematical programming and global optimization...
Background Determining the interaction topology of biological systems is a topic that currently att...
The quest to determine cause from effect is often referred to as reverse engineering in the context ...
With the advent of high-throughput profiling methods, interest in reverse engineering the structure ...
Network representations of biological systems are widespread and reconstructing unknown networks fro...
Reconstruction of biochemical reaction networks (BRN) and genetic regulatory networks (GRN) in parti...
<div><p>Network representations of biological systems are widespread and reconstructing unknown netw...
Much of contemporary systems biology owes its success to the abstraction of a network, the idea that...
Inference of network topology from experimental data is a central endeavor in biology, since knowled...
Network representations of biological systems are widespread and reconstructing unknown networks fro...
Reverse engineering of biochemical networks remains an important open challenge in computational sys...
Reconstruction of biochemical reaction networks is a central topic in systems biology which raises c...
Background Current research in network reverse engineering for genetic or metabolic networks very of...
Reverse engineering is the problem of inferring the structure of a network of interactions between b...
Background: Determining the interaction topology of biological systems is a topic that currently at...
International audienceWe propose a method employing mathematical programming and global optimization...
Background Determining the interaction topology of biological systems is a topic that currently att...
The quest to determine cause from effect is often referred to as reverse engineering in the context ...
With the advent of high-throughput profiling methods, interest in reverse engineering the structure ...
Network representations of biological systems are widespread and reconstructing unknown networks fro...
Reconstruction of biochemical reaction networks (BRN) and genetic regulatory networks (GRN) in parti...
<div><p>Network representations of biological systems are widespread and reconstructing unknown netw...
Much of contemporary systems biology owes its success to the abstraction of a network, the idea that...
Inference of network topology from experimental data is a central endeavor in biology, since knowled...
Network representations of biological systems are widespread and reconstructing unknown networks fro...
Reverse engineering of biochemical networks remains an important open challenge in computational sys...
Reconstruction of biochemical reaction networks is a central topic in systems biology which raises c...
Background Current research in network reverse engineering for genetic or metabolic networks very of...