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Synapse
March 1, 1989Proceedings of the National Academy of Sciences2,509 citationsOpen Access

Stimulus-specific neuronal oscillations in orientation columns of cat visual cortex.

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CGCharles M. GrayWSW. Singer

Key Points

  • To investigate the oscillatory firing patterns of neurons in the cat visual cortex in response to oriented stimuli.
  • Recorded neuronal firing and local field potentials in areas 17 and 18 of the cat visual cortex.
  • Analyzed responses to optimally aligned light bars and compared with dorsal lateral geniculate nucleus recordings.
  • Focused on the peak frequency of neuronal firing near 40 Hz and its correlation with stimulus orientation.
  • Neuronal firing oscillated at a peak frequency close to 40 Hz in response to optimally aligned light bars.
  • Local field potentials displayed maximal amplitude for stimuli matching neuronal orientation preferences.
  • Single and multiunit recordings from the thalamus showed no oscillations in the 20-70 Hz range.

Abstract

In areas 17 and 18 of the cat visual cortex the firing probability of neurons, in response to the presentation of optimally aligned light bars within their receptive field, oscillates with a peak frequency near 40 Hz. The neuronal firing pattern is tightly correlated with the phase and amplitude of an oscillatory local field potential recorded through the same electrode. The amplitude of the local field-potential oscillations are maximal in response to stimuli that match the orientation and direction preference of the local cluster of neurons. Single and multiunit recordings from the dorsal lateral geniculate nucleus of the thalamus showed no evidence of oscillations of the neuronal firing probability in the range of 20-70 Hz. The results demonstrate that local neuronal populations in the visual cortex engage in stimulus-specific synchronous oscillations resulting from an intracortical mechanism. The oscillatory responses may provide a general mechanism by which activity patterns in spatially separate regions of the cortex are temporally coordinated.

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Cite This Study

Gray et al. (1989) studied this question.

synapsesocial.com/papers/69dcbba625b1b6cb33359939https://doi.org/10.1073/pnas.86.5.1698
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