DocumentCode :
1763660
Title :
Deep Hierarchies in the Primate Visual Cortex: What Can We Learn for Computer Vision?
Author :
Kruger, Norbert ; Janssen, P. ; kalkan, Sinan ; Lappe, Markus ; Leonardis, Ale ; Piater, Justus ; Rodriguez-Sanchez, A.J. ; Wiskott, L.
Author_Institution :
Maersk Mc-Kinney Moller Inst., Univ. of Southern Denmark, Odense, Denmark
Volume :
35
Issue :
8
fYear :
2013
fDate :
Aug. 2013
Firstpage :
1847
Lastpage :
1871
Abstract :
Computational modeling of the primate visual system yields insights of potential relevance to some of the challenges that computer vision is facing, such as object recognition and categorization, motion detection and activity recognition, or vision-based navigation and manipulation. This paper reviews some functional principles and structures that are generally thought to underlie the primate visual cortex, and attempts to extract biological principles that could further advance computer vision research. Organized for a computer vision audience, we present functional principles of the processing hierarchies present in the primate visual system considering recent discoveries in neurophysiology. The hierarchical processing in the primate visual system is characterized by a sequence of different levels of processing (on the order of 10) that constitute a deep hierarchy in contrast to the flat vision architectures predominantly used in today´s mainstream computer vision. We hope that the functional description of the deep hierarchies realized in the primate visual system provides valuable insights for the design of computer vision algorithms, fostering increasingly productive interaction between biological and computer vision research.
Keywords :
biology computing; computer vision; neurophysiology; activity recognition; advance computer vision research; biological principle extraction; computational modeling; computer vision algorithms; computer vision audience; deep hierarchies; flat vision architectures; functional principles; hierarchical processing; motion detection; neurophysiology; object categorization; object recognition; primate visual cortex; primate visual system; vision-based manipulation; vision-based navigation; Computer vision; Neurons; Organizations; Retina; Visual systems; Visualization; Computer vision; biological modeling; deep hierarchies; Animals; Artificial Intelligence; Humans; Pattern Recognition, Visual; Primates; Vision, Ocular; Visual Cortex;
fLanguage :
English
Journal_Title :
Pattern Analysis and Machine Intelligence, IEEE Transactions on
Publisher :
ieee
ISSN :
0162-8828
Type :
jour
DOI :
10.1109/TPAMI.2012.272
Filename :
6389683
Link To Document :
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