In systems biology, it is becoming increasingly common to measure biochemical entities at different levels of the same biological system. Hence, data fusion problems are abundant in the life sciences. With the availability of a multitude of measuring techniques, one of the central problems is the heterogeneity of the data. In this paper, we discuss a specific form of heterogeneity, namely, that of measurements obtained at different measurement scales, such as binary, ordinal, interval, and ratio‐scaled variables. Three generic fusion approaches are presented of which two are new to the systems biology community. The methods are presented, put in context, and illustrated with a real‐life genomics example
The goal of data fusion in metabolomics is to combine data of various platforms measured on the same...
In many areas of science, multiple sets of data are collected pertaining to the same system. Example...
L’exploitation conjointe des données transcriptomiques et protéomiques permet l’étude détaillée des ...
In systems biology, it is becoming increasingly common to measure biochemical entities at different ...
In systems biology, it is becoming increasingly common to measure biochemical entities at different ...
In systems biology, it is common to measure biochemical entities at different levels of the same bio...
Biological systems are extremely complex and often involve thousands of interacting components. Desp...
The constant development of analytical techniques leads to an increase in the amount of information ...
Goesmann A, Linke B, Rupp O, et al. Building a BRIDGE for the integration of heterogeneous data from...
Single cell high throughput genomic measurements are revolutionizing the fields of biology and medic...
A comprehensive vision of methodologies and data analytics challenges, framing the nature of coupled...
Dealing with multiple manifestations of the same real-world entity across several data sources is a ...
Technological advances have transformed the scientific landscape by enabling comprehensive quantitat...
Proteomics and metabolomics provide key insights into status and dynamics of biological systems. The...
The goal of data fusion in metabolomics is to combine data of various platforms measured on the same...
In many areas of science, multiple sets of data are collected pertaining to the same system. Example...
L’exploitation conjointe des données transcriptomiques et protéomiques permet l’étude détaillée des ...
In systems biology, it is becoming increasingly common to measure biochemical entities at different ...
In systems biology, it is becoming increasingly common to measure biochemical entities at different ...
In systems biology, it is common to measure biochemical entities at different levels of the same bio...
Biological systems are extremely complex and often involve thousands of interacting components. Desp...
The constant development of analytical techniques leads to an increase in the amount of information ...
Goesmann A, Linke B, Rupp O, et al. Building a BRIDGE for the integration of heterogeneous data from...
Single cell high throughput genomic measurements are revolutionizing the fields of biology and medic...
A comprehensive vision of methodologies and data analytics challenges, framing the nature of coupled...
Dealing with multiple manifestations of the same real-world entity across several data sources is a ...
Technological advances have transformed the scientific landscape by enabling comprehensive quantitat...
Proteomics and metabolomics provide key insights into status and dynamics of biological systems. The...
The goal of data fusion in metabolomics is to combine data of various platforms measured on the same...
In many areas of science, multiple sets of data are collected pertaining to the same system. Example...
L’exploitation conjointe des données transcriptomiques et protéomiques permet l’étude détaillée des ...