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Using Multiple Grid Resources for Bioinformatics Applications in GADU., , , , and . CCGRID, page 41. IEEE Computer Society, (2006)GNARE: an environment for grid-based high-throughput genome analysis., , , , , , and . CCGRID, page 455-462. IEEE Computer Society, (2005)caGrid Workflow Toolkit: A Taverna based workflow tool for cancer Grid., , , , , , and . BMC Bioinform., (2010)Scientific Workflows as Services in caGrid: A Taverna and gRAVI Approach., , , , , , and . ICWS, page 413-420. IEEE Computer Society, (2009)PUMA2 - grid-based high-throughput analysis of genomes and metabolic pathways., , , , , , , and . Nucleic Acids Res., 34 (Database-Issue): 369-372 (2006)Exploring the functional impact of alternative splicing on human protein isoforms using available annotation sources., , , , , , , , , and . Briefings Bioinform., 20 (5): 1754-1768 (2019)Reproducible big data science: A case study in continuous FAIRness., , , , , , , , , and 5 other author(s). RO, (2018)Prediction of candidate genes for neuropsychiatric disorders using feature-based enrichment., , , , , and . BCB, page 564-566. ACM, (2012)High-performance data management for genome sequencing centers using Globus Online: A case study., , and . eScience, page 1-6. IEEE Computer Society, (2012)Build Grid Enabled Scientific Workflows Using gRAVI and Taverna., , , , , and . eScience, page 614-619. IEEE Computer Society, (2008)