4.5 Article

Functional architecture of the retina: Development and disease

Journal

PROGRESS IN RETINAL AND EYE RESEARCH
Volume 42, Issue -, Pages 44-84

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.preteyeres.2014.06.003

Keywords

Retinal development; Mouse retina; Zebrafish retina; Primate retina; Retinal cell mosaics; Retinal synapses; Retinal repair

Categories

Funding

  1. NIH [EY10699, 17101, 14358]
  2. Knights Templar Eye Foundation
  3. Human Frontier Science Program [RGP0035]
  4. [EY01730]

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Structure and function are highly correlated in the vertebrate retina, a sensory tissue that is organized into cell layers with microcircuits working in parallel and together to encode visual information. All vertebrate retinas share a fundamental plan, comprising five major neuronal cell classes with cell body distributions and connectivity arranged in stereotypic patterns. Conserved features in retinal design have enabled detailed analysis and comparisons of structure, connectivity and function across species. Each species, however, can adopt structural and/or functional retinal specializations, implementing variations to the basic design in order to satisfy unique requirements in visual function. Recent advances in molecular tools, imaging and electrophysiological approaches have greatly facilitated identification of the cellular and molecular mechanisms that establish the fundamental organization of the retina and the specializations of its microcircuits during development. Here, we review advances in our understanding of how these mechanisms act to shape structure and function at the single cell level, to coordinate the assembly of cell populations, and to define their specific circuitry. We also highlight how structure is rearranged and function is disrupted in disease, and discuss current approaches to re-establish the intricate functional architecture of the retina. (C) 2014 Elsevier Ltd. All rights reserved.

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