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Advantages and GPU implementation of high-performance indexed DNA search based on suffix arrays.

, , and . HPCS, page 49-55. IEEE, (2011)

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Optimized ASIP architecture for compressed BWT-indexed search in bioinformatics applications., , and . HPCS, page 527-534. IEEE, (2014)Multicore SIMD ASIP for Next-Generation Sequencing and Alignment Biochip Platforms., , , , , and . IEEE Trans. Very Large Scale Integr. Syst., 23 (7): 1287-1300 (2015)Integrated accelerator architecture for DNA sequences alignment with enhanced traceback phase., , , and . HPCS, page 16-23. IEEE, (2010)BioBlaze: Multi-core SIMD ASIP for DNA sequence alignment., , , , , , and . ASAP, page 241-244. IEEE Computer Society, (2013)Configurable and scalable class of high performance hardware accelerators for simultaneous DNA sequence alignment., , and . Concurr. Comput. Pract. Exp., 25 (10): 1319-1339 (2013)Implementation and performance analysis of efficient index structures for DNA search algorithms in parallel platforms., , and . Concurr. Comput. Pract. Exp., 27 (9): 2351-2368 (2015)Advantages and GPU implementation of high-performance indexed DNA search based on suffix arrays., , and . HPCS, page 49-55. IEEE, (2011)Neural Network Predictor for Fast Channel Change on DVB Set-Top-Boxes., , , and . DASIP, volume 13879 of Lecture Notes in Computer Science, page 40-52. Springer, (2023)Application Specific Programmable IP Core for Motion Estimation: Technology Comparison Targeting Efficient Embedded Co-Processing Units., , , , and . DSD, page 181-188. IEEE Computer Society, (2008)