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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)Resource allocation algorithm and OpenMP extensions for parallel execution on a heterogeneous reconfigurable platform., , and . FPL, page 651-654. IEEE, (2008)High Performance Streaming Smith-Waterman Implementation with Implicit Synchronization on Intel FPGA using OpenCL., , and . BIBE, page 492-496. IEEE Computer Society, (2017)FPGA-accelerated Monte-Carlo integration using stratified sampling and Brownian bridges., , , and . FPT, page 68-75. IEEE, (2014)Run-time optimization of a dynamically reconfigurable embedded system through performance prediction., , , , , , and . FPL, page 1-8. IEEE, (2013)Using multi-objective design space exploration to enable run-time resource management for reconfigurable architectures., , , , , and . DATE, page 1379-1384. IEEE, (2012)Power-Efficient Accelerated Genomic Short Read Mapping on Heterogeneous Computing Platforms., , , , and . FCCM, page 28. IEEE Computer Society, (2016)Comparative Analysis of System-Level Acceleration Techniques in Bioinformatics: A Case Study of Accelerating the Smith-Waterman Algorithm for BWA-MEM., , , and . BIBE, page 243-246. IEEE, (2018)Heterogeneous Hardware/Software Acceleration of the BWA-MEM DNA Alignment Algorithm., , , , and . ICCAD, page 240-246. IEEE, (2015)