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Power-efficiency analysis of accelerated BWA-MEM implementations on heterogeneous computing platforms.

, , , , and . ReConFig, page 1-8. IEEE, (2016)

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An FPGA-based systolic array to accelerate the BWA-MEM genomic mapping algorithm., , , and . SAMOS, page 221-227. IEEE, (2015)Power-efficiency analysis of accelerated BWA-MEM implementations on heterogeneous computing platforms., , , , and . ReConFig, page 1-8. IEEE, (2016)HArtes: Hardware-Software Codesign for Heterogeneous Multicore Platforms., , , , , , , , , and 1 other author(s). IEEE Micro, 30 (5): 88-97 (2010)Resource allocation algorithm and OpenMP extensions for parallel execution on a heterogeneous reconfigurable platform., , and . FPL, page 651-654. IEEE, (2008)An Efficient GPUAccelerated Implementation of Genomic Short Read Mapping with BWAMEM., , , and . SIGARCH Comput. Archit. News, 44 (4): 38-43 (2016)GPU-Accelerated BWA-MEM Genomic Mapping Algorithm Using Adaptive Load Balancing., , , and . ARCS, volume 9637 of Lecture Notes in Computer Science, page 130-142. Springer, (2016)Hardware acceleration of BWA-MEM genomic short read mapping for longer read lengths., , , and . Comput. Biol. Chem., (2018)Runtime Memory Allocation in a Heterogeneous Reconfigurable Platform., and . ReConFig, page 71-76. IEEE Computer Society, (2009)IP-XACT extensions for Reconfigurable Computing., , , , , and . ASAP, page 215-218. IEEE Computer Society, (2011)FPGA-accelerated Monte-Carlo integration using stratified sampling and Brownian bridges., , , and . FPT, page 68-75. IEEE, (2014)