Work in Invertebrates on the Mechanisms Underlying Learning

Author:

Quinn W. G.

Publisher

Springer Berlin Heidelberg

Reference123 articles.

1. Abrams, T.W.; Carew, T.J.; Hawkins, R.D.; and Kandel, E.R. 1983. Aspects of the cellular mechanism of temporal specificity in conditioning in Aplysia: Preliminary evidence for Ca+2 influx as a signal of activity. Soc. Neurosci. Abstr. 9: 168.

2. Aceves-Pina, E.O. 1982. Behavioral, anatomical and physiological analysis of normal D. melanogaster and learning-deficient mutants. Ph.D. Thesis, Princeton University, Princeton, NJ.

3. Aceves-Pina, E.O.; Booker, R.; Duerr, J.S.; Livingstone, M.S.; Quinn, W.G.; Smith, R.F.; Sziber, P.P.; Tempel, B.L.; and Tully, T.P. 1983. Learning and memory in Drosophila, studied with mutants. Cold Spring Harbor Symp. 48: 831.

4. Aceves-Pina, E.O., and Quinn, W.G. 1979. Learning in normal and mutant Drosophila larvae. Science 206: 93.

5. Adams, D.J.; Smith, S.J.; and Thompson, S.H. 1980. Ionic currents in molluscan soma. Ann. Rev. Neurosci. 3: 141.

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