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Stimulus-Specific Oscillations in a Retinal Model
2004
IEEE Transactions on Neural Networks
High-frequency oscillatory potentials (HFOPs) in the vertebrate retina are stimulus specific. The phases of HFOPs recorded at any given retinal location drift randomly over time, but regions activated by the same stimulus tend to remain phase locked with approximately zero lag, whereas regions activated by spatially separate stimuli are typically uncorrelated. Based on retinal anatomy, we previously postulated that HFOPs are mediated by feedback from a class of axon-bearing amacrine cells that
doi:10.1109/tnn.2004.832722
pmid:15484885
fatcat:titcy3azevb53czghnkmyfi3eu