Passive Avoidance

Balaban, P. & Chase, R. (1990). Stimulation of Mesocerebrum In Helix aspersa Inhibits the Neural Network Underlying Avoidance Behavior. Journal of Comparative Physiology A, 166, 421-427.

Balaban, P.M., Vehovszky, A., Maximova, O.A., & Zakharov, I.S. (1987). Effect Of 5, 7-Dihydroxytryptamine on the Food-Aversive Conditioning in the Snail Helix lucorum L. Brain Research, 404, 201-210.

Ito, E., Kobayashi, S., Kojima, S., Sadamoto, H., Hatakeyama, D.  (1999).  Associative Learning in the Pond Snail, Lymnaea stagnalisZoological Science, 16, 711-723. *

Kojima, S., Yamanaka, M., Fujito, Y., & Ito, E. (1996). Differential Neuroethological Effects of Aversive and Appetitive Reinforcing Stimuli on Associative Learning in Lymnaea stagnalis. Zoological Science, 13, 803-812.

Maximova, O.A. & Balaban, P.M. (1984). Neuronal Correlates of Aversive Learning in Command Neurons for Avoidance Behavior of Helix lucorum L. Brain Research, 292, 139-149.

Yamanaka, M., Hatakeyama, D., Sadamoto, H., Kimura, T., & Ito, E. (2000).  Development of Key Neurons For Learning Stimulates Learning Ability in Lymnaea stagnalis. Neuroscience Letters, 278, 113-116.

Yamanaka, M., Sadamoto, H., Hatakeyama, D., Nakamura, H., Kojima, S., Kimura, T., Yamashita, M., Urano, A., & Ito, E. (1999).  Developmental Changes in Conditioned Taste Aversion in Lymneae stagnalis. Zoological Science, 16, 9-16.