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The American Naturalist|September 28, 2006
Pollen dispersal in spatially aggregated populationsJuan J Robledo-Arnuncio, Frédéric AusterlitzMolecular Ecology|November 27, 2007
Estimation of the seed dispersal kernel from exact identification of source plantsJuan J Robledo-Arnuncio, Cristina GarcíaGenetics|January 28, 2025
Spatially explicit estimation of recent migration rates in plants using genotypic dataIgor J Chybicki, Juan J Robledo-ArnuncioEvolutionary Applications|May 14, 2019
Measuring viability selection from prospective cohort mortality studies: A case study in maritime pineJuan J Robledo-Arnuncio, Gregor M UngerGenetics|April 4, 2006
A new method of estimating the pollen dispersal curve independently of effective densityJuan J Robledo-Arnuncio, Frédéric Austerlitz, Peter E SmouseEvolutionary Applications|February 3, 2016
Assessing early fitness consequences of exotic gene flow in the wild: a field study with Iberian pine relictsGregor M Unger, Myriam Heuertz, Giovanni G Vendramin, et al.Molecular Ecology|September 17, 2009
Relative contribution of contemporary pollen and seed dispersal to the effective parental size of seedling population of California valley oak (Quercus lobata, Née)Delphine Grivet, Juan J Robledo-Arnuncio, Peter E Smouse, et al.Movement Ecology|February 25, 2015
Space, time and complexity in plant dispersal ecologyJuan J Robledo-Arnuncio, Etienne K Klein, Helene C Muller-Landau, et al.Plos One|February 4, 2014
Assessing intraspecific variation in effective dispersal along an altitudinal gradient: a test in two Mediterranean high-mountain plantsCarlos Lara-Romero, Juan J Robledo-Arnuncio, Alfredo García-Fernández, et al.American Journal of Botany|March 21, 2023
Microgeographic variation in early fitness traits of Pinus sylvestris from contrasting soilsAzucena Jiménez-Ramírez, Aida Solé-Medina, José A Ramírez-Valiente, et al.Pageof 2