Background: Genomic, proteomic and high-throughput gene expression data, when integrated, can be used to map the interaction networks between genes and proteins. Different approaches have been used to analyze these networks, especially in cancer, where mutations in biologically related genes that encode mutually interacting proteins are believed to be involved. This system of integrated networks as a whole exhibits emergent biological properties that are not obvious at the individual network level. We analyze the system in terms of modules, namely a set of densely interconnected nodes that can be further divided into submodules that are expected to participate in multiple biological activities in coordinated manner. Results: In the present...
Background: One challenge facing biologists is to tease out useful information from massive data set...
Abstract An increased surge of -omics data for the diseases such as cancer allows for deriving insig...
The ultimate aim of postgenomic biomedical research is to understand mechanisms of cellular systems ...
Background: Genomic, proteomic and high-throughput gene expression data, when integrated, can be use...
Background: Genomic, proteomic and high-throughput gene expression data, when integrated, can be use...
Improved methods for integrated analysis of heterogeneous large-scale omic data are direly needed. H...
Improved methods for integrated analysis of heterogeneous large-scale omic data are direly needed. H...
BACKGROUND: The most common application of microarray technology in disease research is to identify ...
Breast cancer is a heterogeneous and complex disease, a clear manifestation of this is its classific...
Summarization: The aim of this paper is to provide a snapshot of functional networks with central no...
Summarization: The ultimate goal of the genomic revolution, is understanding the genetic causes, the...
Summarization: One of the goals of cancer research is to understand the genetic causes of disease pa...
Microarray experiments have been extensively used to define signatures, which are sets of genes that...
Background: The consecutive acquisition of genetic alterations characterizes neoplastic processes. A...
Background: The consecutive acquisition of genetic alterations characterizes neoplastic processes. A...
Background: One challenge facing biologists is to tease out useful information from massive data set...
Abstract An increased surge of -omics data for the diseases such as cancer allows for deriving insig...
The ultimate aim of postgenomic biomedical research is to understand mechanisms of cellular systems ...
Background: Genomic, proteomic and high-throughput gene expression data, when integrated, can be use...
Background: Genomic, proteomic and high-throughput gene expression data, when integrated, can be use...
Improved methods for integrated analysis of heterogeneous large-scale omic data are direly needed. H...
Improved methods for integrated analysis of heterogeneous large-scale omic data are direly needed. H...
BACKGROUND: The most common application of microarray technology in disease research is to identify ...
Breast cancer is a heterogeneous and complex disease, a clear manifestation of this is its classific...
Summarization: The aim of this paper is to provide a snapshot of functional networks with central no...
Summarization: The ultimate goal of the genomic revolution, is understanding the genetic causes, the...
Summarization: One of the goals of cancer research is to understand the genetic causes of disease pa...
Microarray experiments have been extensively used to define signatures, which are sets of genes that...
Background: The consecutive acquisition of genetic alterations characterizes neoplastic processes. A...
Background: The consecutive acquisition of genetic alterations characterizes neoplastic processes. A...
Background: One challenge facing biologists is to tease out useful information from massive data set...
Abstract An increased surge of -omics data for the diseases such as cancer allows for deriving insig...
The ultimate aim of postgenomic biomedical research is to understand mechanisms of cellular systems ...