Literature DB >> 12374429

Neural connections and receptive field properties in the primary visual cortex.

Jose-Manuel Alonso1.   

Abstract

A cubic millimeter of primary visual cortex contains about 100,000 neurons that are heavily interconnected by intrinsic and extrinsic afferents. The effort of many neuroanatomists over the past has revealed the general outline of these connections; however, their function remains a mystery. Recently, combined physiological and anatomical approaches are beginning to reveal the role of these connections in the generation of cortical receptive fields. A common theme emerges from all these studies: cortical connections are remarkably specific and this specificity is determined in great extent by the type of connection and the neuronal response properties. Feedforward connections follow relatively rigid rules of wiring selectively targeting neurons with receptive fields matched in position and contrast polarity (thalamus --> cortical layer 4) or position and orientation selectivity (layer 4 --> layers 2 + 3). In contrast, horizontal connections follow more flexible rules connecting distant cells that are not retinotopically aligned and neighboring cells with different orientation preferences. These differences in connectivity may give a hint on how visual stimuli are processed in the primary visual cortex. An attractive hypothesis is that local stimuli use the highly selective feedforward inputs to reliably drive cortical neurons while background stimuli modulate their activity through more flexible horizontal (and feedback) connections.

Mesh:

Year:  2002        PMID: 12374429     DOI: 10.1177/107385802236967

Source DB:  PubMed          Journal:  Neuroscientist        ISSN: 1073-8584            Impact factor:   7.519


  8 in total

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5.  Perceptual organization by proximity and similarity in schizophrenia.

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Review 6.  Canonical microcircuits for predictive coding.

Authors:  Andre M Bastos; W Martin Usrey; Rick A Adams; George R Mangun; Pascal Fries; Karl J Friston
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7.  Selective stimulation of neurons in visual cortex enables segregation of slow and fast connections.

Authors:  T Kim; R D Freeman
Journal:  Neuroscience       Date:  2014-06-02       Impact factor: 3.590

8.  Visual experience modulates spatio-temporal dynamics of circuit activation.

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Journal:  Front Cell Neurosci       Date:  2011-06-28       Impact factor: 5.505

  8 in total

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