4.7 Article

Synaptic Mechanisms Generating Orientation Selectivity in the ON Pathway of the Rabbit Retina

期刊

JOURNAL OF NEUROSCIENCE
卷 36, 期 11, 页码 3336-3349

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.1432-15.2016

关键词

electrophysiology; neural circuit; NMDA receptors; receptive field; retinal ganglion cell; synaptic transmission

资金

  1. National Eye Institute [R01 EY014888, P30 EY010572]
  2. Research to Prevent Blindness (New York)

向作者/读者索取更多资源

Neurons that signal the orientation of edges within the visual field have been widely studied in primary visual cortex. Much less is known about the mechanisms of orientation selectivity that arise earlier in the visual stream. Here we examine the synaptic and morphological properties of a subtype of orientation-selective ganglion cell in the rabbit retina. The receptive field has an excitatory ON center, flanked by excitatory OFF regions, a structure similar to simple cell receptive fields in primary visual cortex. Examination of the light-evoked postsynaptic currents in these ON-type orientation-selective ganglion cells (ON-OSGCs) reveals that synaptic input is mediated almost exclusively through the ON pathway. Orientation selectivity is generated by larger excitation for preferred relative to orthogonal stimuli, and conversely larger inhibition for orthogonal relative to preferred stimuli. Excitatory orientation selectivity arises in part from the morphology of the dendritic arbors. Blocking GABA(A) receptors reduces orientation selectivity of the inhibitory synaptic inputs and the spiking responses. Negative contrast stimuli in the flanking regions produce orientation-selective excitation in part by disinhibition of a tonic NMDA receptor-mediated input arising from ON bipolar cells. Comparison with earlier studies of OFF-type OSGCs indicates that diverse synaptic circuits have evolved in the retina to detect the orientation of edges in the visual input.

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