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Accelerating Key Bioinformatics Tasks 100-fold by Improving Memory Access.

, , and . PEARC, page 7:1-7:5. ACM, (2021)

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The human microbiome project., , , , , and . Nature, 449 (7164): 804--810 (Oct 18, 2007)Communities of microbial eukaryotes in the mammalian gut within the context of environmental eukaryotic diversity., , , , , , , , , and 3 other author(s). Frontiers in microbiology, (2014)Accelerating Key Bioinformatics Tasks 100-fold by Improving Memory Access., , and . PEARC, page 7:1-7:5. ACM, (2021)Testing GitHub projects on custom resources using unprivileged Kubernetes runners., , , and . PEARC, page 332-335. ACM, (2023)Using machine learning to identify major shifts in human gut microbiome protein family abundance in disease., , , , , and . IEEE BigData, page 1272-1280. IEEE Computer Society, (2016)Ten Simple Rules for Reproducible Research in Jupyter Notebooks., , , , , , , , , and 1 other author(s). CoRR, (2018)Enabling microbiome research on personal devices., , and . e-Science, page 229-230. IEEE, (2021)Predictive functional profiling of microbial communities using 16S rRNA marker gene sequences, , , , , , , , , and 2 other author(s). Nature Biotechnology, (August 2013)Ensemble dispatching on an IBM Blue Gene/L for a bioinformatics knowledge environment., , , , , and . SC-MTAGS, ACM, (2009)Two Simulation Tools for Biologically Inspired Virtual Robotics, , , and . Proceedings of the IEEE 5th Chapter Conference on Advances in Cybernetic Systems, page 85--90. (2006)