Ionic Basis of Electrical Activity in Insect Nerve Cells and Synapses

Author:

Pichon Yves

Publisher

Springer US

Reference66 articles.

1. Abbott, N.J. and Pichon, Y., 1976, “Mechanisms for the passive regulation of extracellular K+ in the central nervous system: the implications of invertebrate studies” in “Transport Phenomena in the Nervous System” (G. Levi, L. Battistin and A. Lajtha eds), pp. 151–164, Plenum Press: New York.

2. Abbott, N.J. and Treherne, J.E., 1977, “Homeostasis of the brain microenvironment: a comparative account” in “Transport of Ions and Water in Animals” (B.L. Gupta, R.B. Moreton, J.L. Oshman and B.J. Wall eds), pp. 481–510, Academic Press: London.

3. Anderson, C.R., Cull-Candy, S.G. and Miledi, R., 1978, Glutamate current noise: postsynaptic channel kinetics investigated under voltage clamp. J. Physiol., London, 282: 219–242.

4. Anwyl, R. and Usherwood, P.N.R., 1975, The ionic permeability changes caused by the excitatory transmitter at the insect neuromuscular junction. J. Physiol., London, 249: 24–25P.

5. Boistel, J. and Coraboeuf, E., 1958, Rôle joué par les ions sodium dans la genèse de l’activité électrique du tissu nerveux d’insecte. C.R. Acad. Sci., Paris, 247: 1781–1783.

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