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Your search keyword '"Amacrine Cells physiology"' showing total 21 results

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21 results on '"Amacrine Cells physiology"'

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1. Cholinergic excitation complements glutamate in coding visual information in retinal ganglion cells.

2. Asymmetry between ON and OFF α ganglion cells of mouse retina: integration of signal and noise from synaptic inputs.

3. General features of inhibition in the inner retina.

4. Time course of EPSCs in ON-type starburst amacrine cells is independent of dendritic location.

5. Inner retinal inhibition shapes the receptive field of retinal ganglion cells in primate.

6. Independent control of reciprocal and lateral inhibition at the axon terminal of retinal bipolar cells.

7. Intrinsic oscillatory activity arising within the electrically coupled AII amacrine-ON cone bipolar cell network is driven by voltage-gated Na+ channels.

8. GABA-mediated spatial and temporal asymmetries that contribute to the directionally selective light responses of starburst amacrine cells in retina.

9. Glycinergic neurons process images.

10. Physiological characterization and functional heterogeneity of narrow-field mammalian amacrine cells.

11. Synaptic physiology of direction selectivity in the retina.

12. Bioluminescent imaging of Ca2+ activity reveals spatiotemporal dynamics in glial networks of dark-adapted mouse retina.

13. Synaptic influences on rat ganglion-cell photoreceptors.

14. Spontaneous IPSCs and glycine receptors with slow kinetics in wide-field amacrine cells in the mature rat retina.

15. Multivesicular release and saturation of glutamatergic signalling at retinal ribbon synapses.

16. Light-evoked current responses in rod bipolar cells, cone depolarizing bipolar cells and AII amacrine cells in dark-adapted mouse retina.

17. Stratum-by-stratum projection of light response attributes by retinal bipolar cells of Ambystoma.

18. Dendritic relationship between starburst amacrine cells and direction-selective ganglion cells in the rabbit retina.

19. Functional properties of spontaneous EPSCs and non-NMDA receptors in rod amacrine (AII) cells in the rat retina.

20. Membrane properties of an unusual intrinsically oscillating, wide-field teleost retinal amacrine cell.

21. Non-linear, high-gain and sustained-to-transient signal transmission from rods to amacrine cells in dark-adapted retina of Ambystoma.

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