4.8 Article

Cellular mechanisms underlying stimulus-dependent gain modulation in primary visual cortex neurons in vivo

Journal

NEURON
Volume 59, Issue 1, Pages 150-160

Publisher

CELL PRESS
DOI: 10.1016/j.neuron.2008.05.002

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Funding

  1. NEI NIH HHS [F32 EY017501, F32 EY017501-02, R01 EY013984-05, R01 EY016430-02, R01 EY016430, K99 EY018407, R01 EY013984] Funding Source: Medline

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Gain modulation is a widespread neuronal phenomenon that modifies response amplitude without changing selectivity. Computational and in vitro studies have proposed cellular mechanisms of gain modulation based on the postsynaptic effects of background synaptic activation, but these mechanisms have not been studied in vivo. Here, we used intracellular recordings from cat primary visual cortex to measure neuronal gain while changing background synaptic activity with visual stimulation. We found that increases in the membrane fluctuations associated with increases in synaptic input do not obligatorily result in gain modulation in vivo. However, visual stimuli that evoked sustained changes in resting membrane potential, input resistance, and membrane fluctuations robustly modulated neuronal gain. The magnitude of gain modulation depended critically on the spatiotemporal properties of the visual stimulus. Gain modulation in vivo may thus be determined on a moment-to-moment basis by sensory context and the consequent dynamics of synaptic activation.

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