A possible neuronal release of [14C] GABA from the rat cerebellum in vivo

Author:

Davidson N.,Bernardi N.,Fawcett M.,Wong E.,Assump��o J. A.,Dacke C. G.

Publisher

Springer Science and Business Media LLC

Subject

Physiology (medical),Clinical Biochemistry,Physiology

Reference20 articles.

1. Assump��o, J. A., Bernardi, N., Dacke, C. G., Davidson, N.: The superfused rat cerebellar cortex as an in vivo preparation for studies of neurotransmitter release. J. Physiol. (Lond.)272, 3?4P (1977a)

2. Assump��o, J. A., Bernardi, N., Dacke, C. G., Davidson, N.: Efflux characteristics of isotopically labelled ?-amino-n-butyric acid (GABA) andl-glutamate in the rat cuneate nucleus. Br. J. Pharmacol.59, 488P (1977b)

3. Bisti, S., Iosif, G., Marchesi, G. F., Strata, P.: Pharmacological properties of inhibitions in the cerebellar cortex. Exp. Brain. Res.14, 24?37 (1971)

4. Bowery, N. G., Neal, M. J.: Differential effect of veratridine and potassium depolarization on [3H]GABA release from neurons and glia. J. Physiol. (Lond.)275, 58P (1978)

5. Burry, R. W., Lasher, R. S.: Uptake of GABA in dispersed cell cultures of post-natal rat cerebellum; an electron microscope autoradiographic study. Brain Res.88, 502?507 (1975)

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1. Taurine and Thermoregulation: Behavioral and Cellular Studies;Advances in Experimental Medicine and Biology;1982

2. Veratrum alkaloids as transmitter-releasing agents;Journal of Neuroscience Methods;1980-04

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