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The Journal of Experimental Biology|November 13, 2019
Configural learning in freshly collected, smart, wild LymnaeaDiana Kagan, Ken LukowiakNeurobiology of Learning and Memory|December 25, 2012
The participation of NMDA receptors, PKC, and MAPK in Lymnaea memory extinctionDavid Rosenegger, Ken LukowiakThe Journal of Experimental Biology|October 1, 2014
The flavonol epicatechin reverses the suppressive effects of a stressor on long-term memory formationBogdan Knezevic, Ken LukowiakZoological Science|August 12, 2022
Epicatechin Alters the Activity of a Neuron Necessary for Long-Term Memory of Aerial Respiratory Behavior in Lymnaea stagnalisYoshimasa Komatsuzaki, Ken LukowiakJournal of Comparative Physiology. A, Neuroethology, Sensory, Neural, and Behavioral Physiology|October 28, 2025
Not too different: Wild Lymnaea learning at the pondside and in the labJasper Hollings, Ken LukowiakJournal of Comparative Physiology. A, Neuroethology, Sensory, Neural, and Behavioral Physiology|June 19, 2025
A distinguished palate: taste discrimination and decision making during the Garcia-effect in the pond snail Lymnaea stagnalisGrace Pelé, Ken LukowiakPhysiology & Behavior|June 27, 2021
Configural learning memory can be transformed from intermediate-term to long-term in pond snail Lymnaea stagnalisAnuradha Batabyal, Ken LukowiakThe Journal of Experimental Biology|June 30, 2019
Strain transformation: enhancement of invertebrate memory in a new rearing environmentCailin M Rothwell, Ken LukowiakThe Journal of Experimental Biology|January 25, 2015
Sequential exposure to a combination of stressors blocks memory reconsolidation in LymnaeaShawn Xavier Dodd, Ken LukowiakNeurobiology of Learning and Memory|July 16, 2011
Intermediate and long-term memory are different at the neuronal level in Lymnaea stagnalis (L.)Marvin H Braun, Ken LukowiakPageof 18