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Carboxymethyl cellulose and Pluronic F68 protect the dinoflagellate Protoceratium reticulatum against shear-associated damage
ArticleAbstract: The red-tide dinoflagellate Protoceratium reticulatum is shown to be protected against turbulence-asPalabras claves:cell cycle, Dinoflagellate, microalgae, Protoceratium reticulatum, shear stress, YessotoxinAutores:Belarbi E.H., Chisti Y., García M.D.C.C., García-Camacho F., Juan José Gallardo-Rodríguez, Molina-Grima E., Sánchez-Mirón A.Fuentes:scopusGenetic algorithm-based medium optimization for a toxic dinoflagellate microalga
ArticleAbstract: A genetic algorithm stochastic search strategy was used to optimize the culture medium for producingPalabras claves:Dinoflagellates, Genetic Algorithm, MICROALGA, Protoceratium reticulatum, YessotoxinsAutores:Chisti Y., García-Camacho F., Juan José Gallardo-Rodríguez, Molina-Grima E., Sánchez-Mirón A.Fuentes:scopusPhotobioreactor scale-up for a shear-sensitive dinoflagellate microalga
ArticleAbstract: Large scale culture of marine dinoflagellate microalgae has proved difficult owing to their extremePalabras claves:Dinoflagellates, microalgae, Photobioreactors, Protoceratium reticulatum, Shear rate, YessotoxinsAutores:Belarbi E.H., Chisti Y., García-Camacho F., Juan José Gallardo-Rodríguez, Molina-Grima E., Sánchez-Mirón A.Fuentes:scopus