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Scientific Reports|December 20, 2019
Automated quantification of synaptic boutons reveals their 3D distribution in the honey bee mushroom bodyAmélie Cabirol, Albrecht HaaseInsects|October 17, 2019
The Neurophysiological Bases of the Impact of Neonicotinoid Pesticides on the Behaviour of HoneybeesAmélie Cabirol, Albrecht HaaseCurrent Opinion in Insect Science|July 17, 2024
Interplay between gut symbionts and behavioral variation in social insectsJoanito Liberti, Philipp Engel, Amélie CabirolMolecular Microbiology|September 18, 2023
Neuroactive metabolites modulated by the gut microbiota in honey beesAmélie Cabirol, Silvia Moriano-Gutierrez, Philipp EngelPlos One|May 1, 2018
Relationship between brain plasticity, learning and foraging performance in honey beesAmélie Cabirol, Alex J Cope, Andrew B Barron, et al.Learning & Memory (Cold Spring Harbor, N.Y.)|September 17, 2017
Experience during early adulthood shapes the learning capacities and the number of synaptic boutons in the mushroom bodies of honey bees (Apis mellifera)Amélie Cabirol, Rufus Brooks, Claudia Groh, et al.Trends in Ecology & Evolution|January 24, 2017
Why Bees Are So Vulnerable to Environmental StressorsSimon Klein, Amélie Cabirol, Jean-Marc Devaud, et al.Communications Biology|August 19, 2020
Pheromone components affect motivation and induce persistent modulation of associative learning and memory in honey beesDavid Baracchi, Amélie Cabirol, Jean-Marc Devaud, et al.Plos Biology|March 5, 2024
An engineered bacterial symbiont allows noninvasive biosensing of the honey bee gut environmentAudam Chhun, Silvia Moriano-Gutierrez, Florian Zoppi, et al.Msphere|August 19, 2024
Fecal transplant allows transmission of the gut microbiota in honey beesAmélie Cabirol, Audam Chhun, Joanito Liberti, et al.Pageof 2