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Coordinated Optimization of Visual Cortical Maps (I) Symmetry-based Analysis

Overview of attention for article published in PLoS Computational Biology, November 2012
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Title
Coordinated Optimization of Visual Cortical Maps (I) Symmetry-based Analysis
Published in
PLoS Computational Biology, November 2012
DOI 10.1371/journal.pcbi.1002466
Pubmed ID
Authors

Lars Reichl, Dominik Heide, Siegrid Löwel, Justin C. Crowley, Matthias Kaschube, Fred Wolf

Abstract

In the primary visual cortex of primates and carnivores, functional architecture can be characterized by maps of various stimulus features such as orientation preference (OP), ocular dominance (OD), and spatial frequency. It is a long-standing question in theoretical neuroscience whether the observed maps should be interpreted as optima of a specific energy functional that summarizes the design principles of cortical functional architecture. A rigorous evaluation of this optimization hypothesis is particularly demanded by recent evidence that the functional architecture of orientation columns precisely follows species invariant quantitative laws. Because it would be desirable to infer the form of such an optimization principle from the biological data, the optimization approach to explain cortical functional architecture raises the following questions: i) What are the genuine ground states of candidate energy functionals and how can they be calculated with precision and rigor? ii) How do differences in candidate optimization principles impact on the predicted map structure and conversely what can be learned about a hypothetical underlying optimization principle from observations on map structure? iii) Is there a way to analyze the coordinated organization of cortical maps predicted by optimization principles in general? To answer these questions we developed a general dynamical systems approach to the combined optimization of visual cortical maps of OP and another scalar feature such as OD or spatial frequency preference. From basic symmetry assumptions we obtain a comprehensive phenomenological classification of possible inter-map coupling energies and examine representative examples. We show that each individual coupling energy leads to a different class of OP solutions with different correlations among the maps such that inferences about the optimization principle from map layout appear viable. We systematically assess whether quantitative laws resembling experimental observations can result from the coordinated optimization of orientation columns with other feature maps.

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Geographical breakdown

Country Count As %
Germany 1 2%
Switzerland 1 2%
Chile 1 2%
Italy 1 2%
Greece 1 2%
United States 1 2%
Unknown 60 91%

Demographic breakdown

Readers by professional status Count As %
Researcher 19 29%
Student > Master 14 21%
Student > Ph. D. Student 7 11%
Student > Doctoral Student 3 5%
Professor > Associate Professor 3 5%
Other 9 14%
Unknown 11 17%
Readers by discipline Count As %
Agricultural and Biological Sciences 14 21%
Neuroscience 9 14%
Physics and Astronomy 7 11%
Linguistics 5 8%
Mathematics 4 6%
Other 14 21%
Unknown 13 20%