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Experimental Brain Research|January 1, 1981
Mapping studies of the tectal representation of the frog binocular visual field. A problem of methodologyF Gaillard, G GalandExperimental Brain Research|February 15, 1979
Diencephalic binocular wide field neurons in the frogF Gaillard, G GalandComptes Rendus Des Seances De L'Academie Des Sciences. Serie D, Sciences Naturelles|April 2, 1979
[Topography of the tecto-tectal component of the main ipsilateral visual pathway of the frog (Rana esculenta L.)]F Gaillard, G GalandComptes Rendus Hebdomadaires Des Seances De L'Academie Des Sciences. Serie D: Sciences Naturelles|December 1, 1978
[Existence of a non-retinotopic contralateral retino-tectal visual projection in the normal frog Rana esculenta L]F Gaillard, G GalandJournal De Physiologie|January 1, 1980
A possible neurophysiological basis for depth perception in frogs: existence of a horopter surfaceF Gaillard, G GalandExperimental Brain Research|June 1, 1979
Pineal response types in the frog's brain under white light exposureJ Cadusseau, F Gaillard, G GalandComparative Biochemistry and Physiology. B, Comparative Biochemistry|January 1, 1989
Brush border membrane sucrase-isomaltase, maltase-glucoamylase and trehalase in mammals. Comparative development, effects of glucocorticoids, molecular mechanisms, and phylogenetic implicationsG GalandComparative Biochemistry and Physiology. A, Comparative Physiology|January 1, 1986
Maltase-glucoamylase and trehalase in the rabbit small intestine and kidney brush border membranes during postnatal development, the effects of hydrocortisoneG GalandBiochimica Et Biophysica Acta|January 29, 1990
First purification and characterization of a sucrase-isomaltase from goose kidney microvillous membraneG GalandPageof 15