Active and passive axonal propagation of non-spike signals in the retina ofCalliphora

Zeitschrift für vergleichende Physiologie - Tập 85 - Trang 89-104 - 1973
F. Zettler1, M. Järvilehto2
1Zoologisches Institut der Universität, München, Federal Republic of Germany
2Physiologisches Institutder Universität, Oulu 10, Finland

Tóm tắt

The dipteran photoreceptors of type R1–6 and the monopolar neurons of type L1–2 have been investigated. The light-induced intracellular potentials within a single cell type vary according to the part of the cell from which they are recorded. Current passed artificially through the cell membrane could influence these light-induced potentials. The nature of the dependence of the potentials upon such a current also varies within a single cell type, according to the part of the cell in which this dependence is studied. From these experiments one can conclude the following:

Tài liệu tham khảo

Alkon, D. L., Fuortes, M. G. F.: Responses of photoreceptors inHermissenda. J. gen. Physiol.60, 631–694 (1972). Arnett, D. W.: Spatial and temporal integration properties of units in first optic ganglion of Dipterans. J. Neurophysiol.35, 429–444 (1972). Autrum, H., Zettler, F., Järvilehto, M.: Postsynaptic potentials from a single monopolar neuron of the Ganglion Opticum I of the blowflyCalliphora. Z. vergl. Physiol.70, 414–424 (1970). Baylor, D. A., Fuortes, M. G. F.: Electrical responses of single cones in the retina of the turtle. J. Physiol. (Lond.)207, 77–92 (1970). Boschek, C. B.: On the fine structure of the peripheral retina and Lamina ganglionaris of the fly,Musca domestica. Z. Zellforsch.118, 369–409 (1971). Braitenberg, V.: Patterns of projection in the visual system of the fly. I. Retinalamina projections. Exp. Brain Res.3, 271–298 (1967). Brown, H. M., Hagiwara, S., Koike, H., Meech, R. M.: Membrane properties of a barnacle photoreceptor examined by the voltage clamp technique. J. Physio. (Lond.)208, 385–413 (1970). Cajal, S. R., Sánchez, D.: Contribución al conocimiento de los centros nerviosos de los insectos. Trab. Lab. Invest. Biol. (Madrid)13, 1–168 (1915). Chappell, R. L., Dowling, J. E.: Neural organization of the median ocellus of the dragonfly. I. Intracellular activity. J. gen. Physiol.60, 121–147 (1972). Gemperlein, R., Smola, U.: Übertragungseigenschaften der Sehzelle der SchmeißfliegeCalliphora erythrocephala. 3. Verbesserung des Signal-Störungs-Verhältnisses durch präsvnaptische Summation in der Lamina ganglionaris. J. comp. Physiol.79, 393–409 (1972). Ioannides, A. C., Walcott, B.: Graded illumination potentials from retinula cell axons in the bugLethocerus. Z. vergl. Physiol.71, 315–325 (1971). Järvilehto, M., Zettler, F.: Microlocalisation of lamina-located visual cell activities in the compound eye of the blowflyCalliphora. Z. vergl. Physiol.69, 134–138 (1970). Järvilehto, M., Zettler, F.: Localized intracellular potentials from pre- and post-synaptic components in the external plexiform layer of an insect retina. Z. vergl. Physiol.75, 422–440 (1971). Järvilehto, M., Zettler, F.: Electrophysiological-histological studies on some functional properties of visual cells and second order neurons of an insect retina. Z. Zellforsch.136, 291–306 (1973). Kaneko, A.: Physiological and morphological identification of horizontal, bipolar and amacrine cells in goldfish retina. J. Physiol. (Lond.)207, 623–633 (1970). Knight, B. W., Toyoda, J.-L, Dodge, F.-A.Jr.: A quantitative description of the dynamics of excitation and inhibition in the eye ofLimulus. J. gen. Physiol.56, 421 (1970). McReynolds, J. S., Gorman, A. L. F.: Receptor potentials of opposite polarity in the eye of the scallop,Pecten irradians. J. gen. Physiol.56, 376–391 (1970). Millechia, R., Mauro, A.: The ventral photoreceptor cell ofLimulus. III. A voltageclamp study. J. gen. Physiol.54, 331–351 (1969). Murakami, M., Shigematsu, Y.: Duality of conduction mechanism in bipolar cells of the frog retina. Vision Res.10, 1–10 (1970). Scholes, J.: The electrical responses of the retinal receptors and the lamina in the visual system of the flyMusca. Kybernetik6, 149–162 (1969). Shaw, S. R.: Organization of the locust retina. Symp. Zool. Soc. Lond.23, 135–163 (1968). Shaw, S. R.: Decremental conduction of the visual signal in barnacle lateral eye. J. Physiol. (Lond.)220, 145–175 (1972). Steinberg, R. H., Schmidt, R.: Identification of horizontal cells as S-potential generators in the cat retina by intracellular dye injection. Vision Res.10, 817–820 (1970). Strausfeld, N. J.: The organization of the insect visual system (light microscopy). I. Projections and arrangements of neurons in the lamina ganglionaris of Diptera. Z. Zellforsch.121, 377–441 (1971). Trujillo-Cenóz, O.: Some aspects of the structural organization of the intermediate retina of Dipterans. J. Ultrastruct. Res.13, 1–33 (1965). Werblin, F. S., Dowling, J. E.: Organization of the retina of the mudpuppy,Necturus maculosus. II. Intracellular recording. J. Neurophysiol.22, 339–355 (1969). Zettler, F., Järvilehto, M.: Decrement-free conduction of graded potentials along the axon of a monopolar neuron. Z. vergl. Physiol.75, 402–421 (1971). Zettler, F., Järvilehto, M.: Lateral inhibition in an insect eye. Z. vergl. Physiol.76, 233–244 (1972).