Literature DB >> 17515899

Supralinear increase of recurrent inhibition during sparse activity in the somatosensory cortex.

Christoph Kapfer1, Lindsey L Glickfeld, Bassam V Atallah, Massimo Scanziani.   

Abstract

The balance between excitation and inhibition in the cortex is crucial in determining sensory processing. Because the amount of excitation varies, maintaining this balance is a dynamic process; yet the underlying mechanisms are poorly understood. We show here that the activity of even a single layer 2/3 pyramidal cell in the somatosensory cortex of the rat generates widespread inhibition that increases disproportionately with the number of active pyramidal neurons. This supralinear increase of inhibition results from the incremental recruitment of somatostatin-expressing inhibitory interneurons located in layers 2/3 and 5. The recruitment of these interneurons increases tenfold when they are excited by two pyramidal cells. A simple model demonstrates that the distribution of excitatory input amplitudes onto inhibitory neurons influences the sensitivity and dynamic range of the recurrent circuit. These data show that through a highly sensitive recurrent inhibitory circuit, cortical excitability can be modulated by one pyramidal cell.

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Year:  2007        PMID: 17515899      PMCID: PMC3518866          DOI: 10.1038/nn1909

Source DB:  PubMed          Journal:  Nat Neurosci        ISSN: 1097-6256            Impact factor:   24.884


  41 in total

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9.  Distinct subtypes of somatostatin-containing neocortical interneurons revealed in transgenic mice.

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  221 in total

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Review 9.  Inhibitory Interneurons Regulate Temporal Precision and Correlations in Cortical Circuits.

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10.  Plasticity of recurrent l2/3 inhibition and gamma oscillations by whisker experience.

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