4.1 Article

Retinotopic organization of ferret suprasylvian cortex

期刊

VISUAL NEUROSCIENCE
卷 23, 期 1, 页码 61-77

出版社

CAMBRIDGE UNIV PRESS
DOI: 10.1017/S0952523806231067

关键词

extrastriate; neurophysiology; neuroanatomy; receptive field; visual cortex

资金

  1. NATIONAL CENTER FOR RESEARCH RESOURCES [G12RR003060] Funding Source: NIH RePORTER
  2. NATIONAL EYE INSTITUTE [R01EY012781] Funding Source: NIH RePORTER
  3. NCRR NIH HHS [G12 RR03060] Funding Source: Medline
  4. NEI NIH HHS [EY12781] Funding Source: Medline

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The retinotopic organization of striate and several extrastriate areas of ferret cortex has been established. Here we describe the representation of the visual field oil the Suprasylvian Visual area (Ssy). This cortical region runs mediolaterally along the posterior bank of the suprasylvian sulcus, and is distinct from adjoining areas in anatomical architecture. The Ssy lies immediately rostral to visual area 21, medial to lateral temporal areas, and lateral to posterior parietal areas. In electrophysiological experiments we made extracellular recordings in adult ferrets. We find that single and multiunit receptive fields range in size from 2 deg X 4 deg to 21 deg x 52 deg. The total visual field representation in Ssy spans over 70 deg in azimuth in the contralateral hemifield (with a small incursion into the ipsilateral hemifield), and from +36 deg to -30 deg in elevation. There are often two representations of the horizontal meridian. Furthermore, the location of the transition from upper to lower fields varies among animals. General features of topography are confirmed in anatomical experiments in which we made tracer injections into different locations in Ssy, and determined the location of retrograde label in area 17. Both isoelevation and isoazimuth lines can Span Substantial rostrocaudal and mediolateral distances in cortex, sometimes forming closed Contours. This topography results in cortical magnifications averaging 0.07 mm/deg in elevation and 0.06 mm/deg azimuth: however, some contours can run in Such a way that it is possible to move a large distance on cortex without moving in the Visual field. Because of these irregularities, Ssy contains a coarse representation of the contralateral visual field.

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