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Reverse Engineering and Analysis of Genome-Wide Gene Regulatory Networks from Gene Expression Profiles Using High-Performance Computing.

, , , , , , and . IEEE ACM Trans. Comput. Biol. Bioinform., 9 (3): 668-678 (2012)

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Programming for observability support in a parallel programming environment., and . ACM Conference on Computer Science, page 189-197. ACM, (1986)The μ Project: An Experience with a Multimicroprocessor System., , , , and . IEEE Micro, 2 (2): 38-50 (1982)Mantra 2.0: an online collaborative resource for drug mode of action and repurposing by network analysis., , , , , , , , and . Bioinform., 30 (12): 1787-1788 (2014)Towards an Efficient Implementation of an Accurate SPH Method., , , , and . NUMTA(1), volume 11973 of Lecture Notes in Computer Science, page 3-10. Springer, (2019)PAPRICA-3: A Real-Time Morhphological Image Processor., , , , , , and . ICIP (3), page 654-658. IEEE Computer Society, (1994)Using a massively parallel architecture for integrated circuits testing., and . PDP, page 332-338. IEEE Computer Society, (1995)Design and Implementation of the Control Structure of the PAPRICA-3 Processor., , , , and . PDP, page 290-296. IEEE Computer Society, (1996)A Parallel Combustion Solver within an Operator Splitting Context for Engine Simulations on Grids., , , , and . LSSC, volume 4818 of Lecture Notes in Computer Science, page 167-174. Springer, (2007)A Low-Cost Parallel VLSI Architecture for Low-Level Vision., , and . MVA, page 11-16. (1992)Performance and energy-efficient implementation of a smart city application on FPGAs., , , , , , , , and . J. Real Time Image Process., 17 (3): 729-743 (2020)