<div><p>“Robustness”, the network ability to maintain systematic performance in the face of intrinsic perturbations, and “response ability”, the network ability to respond to external stimuli or transduce them to downstream regulators, are two important complementary system characteristics that must be considered when discussing biological system performance. However, at present, these features cannot be measured directly for all network components in an experimental procedure. Therefore, we present two novel systematic measurement methods – Network Robustness Measurement (NRM) and Response Ability Measurement (RAM) – to estimate the network robustness and response ability of a gene regulatory network (GRN) or protein-protein interaction ne...
The increasing availability of large network datasets derived from high-throughput experiments requi...
Background\ud Reverse engineering gene networks and identifying regulatory interactions are integral...
The aim of systems biology is to study living beings at the system level. This means that instead of...
"Robustness", the network ability to maintain systematic performance in the face of intrinsic pertur...
‘‘Robustness’’, the network ability to maintain systematic performance in the face of intrinsic pert...
<p>This flowchart delineates the process used to construct the gene regulatory network (GRN) and pro...
<p>Network robustness (<i>η</i><sup>o</sup>) and response ability (<i>δ</i><sup>o</sup>) of the GRN ...
Network science studies relationships between objects, representing each object as a node and the re...
The study of gene relationships and their effect on biological function and phenotype is a focal poi...
A primary challenge in the analysis of high-throughput biological data is the abundance of correlate...
<div><p>The study of gene relationships and their effect on biological function and phenotype is a f...
The gene regulatory network (GRN) is the central decision-making module of the cell. We have develop...
Scientists today have access to an unprecedented arsenal of high-tech tools that can be used to thor...
BackgroundReverse engineering gene networks and identifying regulatory interactions are integral to ...
Summary: Biological systems are driven by intricate interactions among molecules. Many methods have ...
The increasing availability of large network datasets derived from high-throughput experiments requi...
Background\ud Reverse engineering gene networks and identifying regulatory interactions are integral...
The aim of systems biology is to study living beings at the system level. This means that instead of...
"Robustness", the network ability to maintain systematic performance in the face of intrinsic pertur...
‘‘Robustness’’, the network ability to maintain systematic performance in the face of intrinsic pert...
<p>This flowchart delineates the process used to construct the gene regulatory network (GRN) and pro...
<p>Network robustness (<i>η</i><sup>o</sup>) and response ability (<i>δ</i><sup>o</sup>) of the GRN ...
Network science studies relationships between objects, representing each object as a node and the re...
The study of gene relationships and their effect on biological function and phenotype is a focal poi...
A primary challenge in the analysis of high-throughput biological data is the abundance of correlate...
<div><p>The study of gene relationships and their effect on biological function and phenotype is a f...
The gene regulatory network (GRN) is the central decision-making module of the cell. We have develop...
Scientists today have access to an unprecedented arsenal of high-tech tools that can be used to thor...
BackgroundReverse engineering gene networks and identifying regulatory interactions are integral to ...
Summary: Biological systems are driven by intricate interactions among molecules. Many methods have ...
The increasing availability of large network datasets derived from high-throughput experiments requi...
Background\ud Reverse engineering gene networks and identifying regulatory interactions are integral...
The aim of systems biology is to study living beings at the system level. This means that instead of...