The dependence of life scientists on software has steadily grown in recent years. For many tasks, researchers have to decide which of the available bioinformatics software are more suitable for their specific needs. Additionally researchers should be able to objectively select the software that provides the highest accuracy, the best efficiency and the highest level of reproducibility when integrated in their research projects. Critical benchmarking of bioinformatics methods, tools and web services is therefore an essential community service, as well as a critical component of reproducibility efforts. Unbiased and objective evaluations are challenging to set up and can only be effective when built and implemented around community driven ef...
The pace at which scientific data is produced and disseminated has never been as high as it is curre...
The exponential growth in the amount of genomic data has spurred growing interest in large scale an...
High-throughput technologies, such as next-generation sequencing, have turned molecular biology into...
The dependence of life scientists on software has steadily grown in recent years. For many tasks, re...
In computational biology and other sciences, researchers are frequently faced with a choice between ...
Computational omics methods packaged as software have become essential to modern biological research...
To make use of Big Data software tools and computer analytics are essential. However, academic softw...
In this paper, we propose BIOPERF, a definitive benchmark suite of representative applications from...
Computational biology has provided widely used and powerful software tools for testing and making in...
Recent advances in bioinformatics and the significant increase in computational power available to...
In bioinformatics there often exist a wide selection of different algorithms to solve a given proble...
Bioinformatics relies more than ever on information technologies. This pressures scientists to keep ...
Computational methods represent the lifeblood of modern molecular biology. Benchmarking is important...
This is an Open Access article distributed under the terms of the Creative Commons Attribution Licen...
Leading scientists tell us that the problem of large data and data integration, referred to as 'big ...
The pace at which scientific data is produced and disseminated has never been as high as it is curre...
The exponential growth in the amount of genomic data has spurred growing interest in large scale an...
High-throughput technologies, such as next-generation sequencing, have turned molecular biology into...
The dependence of life scientists on software has steadily grown in recent years. For many tasks, re...
In computational biology and other sciences, researchers are frequently faced with a choice between ...
Computational omics methods packaged as software have become essential to modern biological research...
To make use of Big Data software tools and computer analytics are essential. However, academic softw...
In this paper, we propose BIOPERF, a definitive benchmark suite of representative applications from...
Computational biology has provided widely used and powerful software tools for testing and making in...
Recent advances in bioinformatics and the significant increase in computational power available to...
In bioinformatics there often exist a wide selection of different algorithms to solve a given proble...
Bioinformatics relies more than ever on information technologies. This pressures scientists to keep ...
Computational methods represent the lifeblood of modern molecular biology. Benchmarking is important...
This is an Open Access article distributed under the terms of the Creative Commons Attribution Licen...
Leading scientists tell us that the problem of large data and data integration, referred to as 'big ...
The pace at which scientific data is produced and disseminated has never been as high as it is curre...
The exponential growth in the amount of genomic data has spurred growing interest in large scale an...
High-throughput technologies, such as next-generation sequencing, have turned molecular biology into...