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GeNeDA: An Open-Source Workflow for Design Automation of Gene Regulatory Networks Inspired from Microelectronics.

, , , , , and . Journal of Computational Biology, 23 (10): 841-855 (2016)

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VHDL-AMS Model of Ferroelectric Liquid Crystals., , and . FDL, page 31-40. ECSI, (2006)Gate-level modeling for CMOS circuit simulation with ultimate FinFETs., , and . NANOARCH, page 22-29. ACM, (2012)Live demonstration: Automated design of artificial biological functions based on fuzzy logic., , , , and . BioCAS, page 189. IEEE, (2014)A game-of-life like simulator for design-oriented modeling of BioBricks in synthetic biology., , , and . EMBC, page 5462-5465. IEEE, (2012)Integration of SBML models for the description of biological system in a lab-on-chip., , , and . MIXDES, page 165-170. IEEE, (2015)Opportunities and challenges for the virtual prototyping of synthetic biological functions., , , , , and . ISCAS, page 2013-2016. IEEE, (2014)Virtual prototyping for biosystems: A spicy challenge., , , and . NEWCAS, page 241-244. IEEE, (2017)Modeling the effect of strong magnetic field on n-type MOSFET in strong inversion., , , , , , , , , and . ICECS, page 637-640. IEEE, (2018)Virtual prototyping of biosensors involving reaction- diffusion phenomena., , , , and . NEWCAS, page 40-43. IEEE, (2018)GeNeDA: An Open-Source Workflow for Design Automation of Gene Regulatory Networks Inspired from Microelectronics., , , , , and . Journal of Computational Biology, 23 (10): 841-855 (2016)