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Optics Letters|April 3, 2008
Observation of two-dimensional lattice interface solitonsA Szameit, Y V Kartashov, F Dreisow, et al.Optics Letters|March 14, 2009
Observation of two-dimensional defect surface solitonsA Szameit, Y V Kartashov, M Heinrich, et al.The Journal of Endocrinology|June 17, 2000
Human umbilical vein endothelial cells express multiple prolactin isoformsA M Corbacho, Y Macotela, G Nava, et al.Optics Letters|December 3, 2009
Observation of two-dimensional superlattice solitonsM Heinrich, Y V Kartashov, L P R Ramirez, et al.Nutritional Neuroscience|March 2, 2021
Metabolic and neurological consequences of the treatment with polyphenols: a systematic review in rodent models of noncommunicable diseasesD C Lacerda, M V Urquiza-Martínez, R Manhaes-de-Castro, et al.Investigative Ophthalmology & Visual Science|October 6, 1999
Inhibition of rat corneal angiogenesis by 16-kDa prolactin and by endogenous prolactin-like moleculesZ Dueñas, L Torner, A M Corbacho, et al.Physical Review Letters|January 15, 2011
Three-dimensional light bullets in arrays of waveguidesS Minardi, F Eilenberger, Y V Kartashov, et al.Proceedings of the National Academy of Sciences of the United States of America|October 25, 1994
The prolactin gene is expressed in the hypothalamic-neurohypophyseal system and the protein is processed into a 14-kDa fragment with activity like 16-kDa prolactinC Clapp, L Torner, G Gutiérrez-Ospina, et al.The Journal of Endocrinology|August 26, 1998
Expression of prolactin mRNA and of prolactin-like proteins in endothelial cells: evidence for autocrine effectsC Clapp, F J López-Gómez, G Nava, et al.Physical Review Letters|March 18, 2022
Observation of Edge Solitons in Topological Trimer ArraysY V Kartashov, A A Arkhipova, S A Zhuravitskii, et al.Pageof 8