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Accelerating Genome Assembly Using Hard Embedded Blocks in FPGAs.

, , and . VLSID, page 306-311. IEEE Computer Society, (2014)

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Improving Map-Reduce for GPUs with cache., , and . Int. J. High Perform. Syst. Archit., 5 (3): 166-177 (2015)Fundus Imaging Based Affordable Eye Care., and . HEALTHINF, page 634-641. SciTePress, (2015)High performance 3D-FFT implementation., , , and . ISCAS, page 2227-2230. IEEE, (2013)Theory of Extended Linear Machines., , and . IEEE Trans. Computers, 51 (9): 1106-1110 (2002)GGAKE: GPU Based Genome Assembly Using K-Mer Extension., , and . HPCC/EUC, page 1105-1112. IEEE, (2013)A Reconfigurable Processor for Phylogenetic Inference., , and . VLSI Design, page 226-231. IEEE Computer Society, (2011)Accelerating Genome Assembly Using Hard Embedded Blocks in FPGAs., , and . VLSID, page 306-311. IEEE Computer Society, (2014)Approximate Computing Applied to Bacterial Genome Identification using Self-Organizing Maps., , , , , , and . ISVLSI, page 560-567. IEEE, (2019)PASCAL: Timing SCA Resistant Design and Verification Flow., , , and . IOLTS, page 239-242. IEEE, (2019)A Modular Android-Based Multi-sensor mHealth System., , , and . BIOSTEC (Selected Papers), volume 511 of Communications in Computer and Information Science, page 360-377. Springer, (2014)