Applied Bioinformatics Group

A   A   A
Home > Publications > Testing and validation of computational methods for mass spectrometry

Skip to content. | Skip to navigation

Document Actions

Laurent Gatto, Kasper Hansen, Michael Hoopmann, Henning Hermjakob, Oliver Kohlbacher, and Andreas Beyer (2016)

Testing and validation of computational methods for mass spectrometry

J. Proteome Res., 15(3):809-14.

High-throughput methods based on mass spectrometry (proteomics, metabolomics, lipidomics, etc.) produce a wealth of data that cannot be analyzed without computational methods. The impact of the choice of method on the overall result of a biological study is often underappreciated, but different methods can result in very different biological findings. It is thus essential to evaluate and compare the correctness and relative performance of computational methods. The volume of the data as well as the complexity of the algorithms render unbiased comparisons challenging. This paper discusses some problems and challenges in testing and validation of computational methods. We discuss the different types of data (simulated and experimental validation data) as well as different metrics to compare methods. We also introduce a new public repository for mass spectrometric reference data sets ( that contains a collection of publicly available datasets for performance evaluation for a wide range of different methods.