| Literature DB >> 19052224 |
Jaime E Heiss1, Yonatan Katz, Elad Ganmor, Ilan Lampl.
Abstract
Sustained stimulation of sensory organs results in adaptation of the neuronal response along the sensory pathway. Whether or not cortical adaptation affects equally excitation and inhibition is poorly understood. We examined this question using patch recordings of neurons in the barrel cortex of anesthetized rats while repetitively stimulating the principal whisker. We found that inhibition adapts more than excitation, causing the balance between them to shift toward excitation. A comparison of the latency of thalamic firing and evoked excitation and inhibition in the cortex strongly suggests that adaptation of inhibition results mostly from depression of inhibitory synapses rather than adaptation in the firing of inhibitory cells. The differential adaptation of the evoked conductances that shifts the balance toward excitation may act as a gain mechanism which enhances the subthreshold response during sustained stimulation, despite a large reduction in excitation.Entities:
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Year: 2008 PMID: 19052224 PMCID: PMC6671605 DOI: 10.1523/JNEUROSCI.2646-08.2008
Source DB: PubMed Journal: J Neurosci ISSN: 0270-6474 Impact factor: 6.167