BACKGROUND: Complex diseases are characterized by multiple subtle perturbations to biological processes. New omics platforms can detect these perturbations, but translating the diverse molecular and statistical information into testable mechanistic hypotheses is challenging. Therefore, we set out to create a public tool that integrates these data across multiple datasets, platforms, study designs and species in order to detect the most promising targets for further mechanistic studies. RESULTS: We developed Mergeomics, a computational pipeline consisting of independent modules that 1) leverage multi-omics association data to identify biological processes that are perturbed in disease, and 2) overlay the disease-associated processes onto mol...
High-throughput technologies have revolutionized medical research. The advent of genotyping arrays e...
BACKGROUND: Diseases are complex phenotypes often arising as an emergent property of a non-linear ne...
High-throughput technologies have revolutionized medical research. The advent of genotyping arrays e...
BackgroundComplex diseases are characterized by multiple subtle perturbations to biological processe...
Background: Complex diseases are characterized by multiple subtle perturbations to biological proces...
Background: Complex diseases are characterized by multiple subtle perturbations to biological proces...
Background: Complex diseases are characterized by multiple subtle perturbations to biological proces...
Background Complex diseases are characterized by multiple subtle perturbations to biological proc...
Background Complex diseases are characterized by multiple subtle perturbations to biological proc...
BackgroundHuman diseases are commonly the result of multidimensional changes at molecular, cellular,...
BackgroundHuman diseases are commonly the result of multidimensional changes at molecular, cellular,...
Background: Human diseases are commonly the result of multidimensional changes at molecular, cellula...
The past few decades have seen dramatic increase in the prevalence of metabolic diseases (MetDs) inc...
Stable, predictive biomarkers and interpretable disease signatures are seen as a significant step to...
We recently presented a three-pronged association study that integrated human intestinal microbiome ...
High-throughput technologies have revolutionized medical research. The advent of genotyping arrays e...
BACKGROUND: Diseases are complex phenotypes often arising as an emergent property of a non-linear ne...
High-throughput technologies have revolutionized medical research. The advent of genotyping arrays e...
BackgroundComplex diseases are characterized by multiple subtle perturbations to biological processe...
Background: Complex diseases are characterized by multiple subtle perturbations to biological proces...
Background: Complex diseases are characterized by multiple subtle perturbations to biological proces...
Background: Complex diseases are characterized by multiple subtle perturbations to biological proces...
Background Complex diseases are characterized by multiple subtle perturbations to biological proc...
Background Complex diseases are characterized by multiple subtle perturbations to biological proc...
BackgroundHuman diseases are commonly the result of multidimensional changes at molecular, cellular,...
BackgroundHuman diseases are commonly the result of multidimensional changes at molecular, cellular,...
Background: Human diseases are commonly the result of multidimensional changes at molecular, cellula...
The past few decades have seen dramatic increase in the prevalence of metabolic diseases (MetDs) inc...
Stable, predictive biomarkers and interpretable disease signatures are seen as a significant step to...
We recently presented a three-pronged association study that integrated human intestinal microbiome ...
High-throughput technologies have revolutionized medical research. The advent of genotyping arrays e...
BACKGROUND: Diseases are complex phenotypes often arising as an emergent property of a non-linear ne...
High-throughput technologies have revolutionized medical research. The advent of genotyping arrays e...