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Activity Recognition by Integrating the Physics of Motion with a Neuromorphic Model of Perception∗ Ricky J. Sethi UC Riverside Amit K. Roy-Chowdhury
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Document Date: 2009-10-08 20:40:08


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City

Neurobiologically / Berlin / Moscow / /

Company

Rt Rt / Artificial Neural Networks / Pergamon Press / SPSS / /

Country

United States / /

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Event

Product Issues / Product Recall / /

Facility

University of Rochester / Sethi UC Riverside Amit K. Roy-Chowdhury UC Riverside Saad Ali Robotics Institute / University Science Books / /

IndustryTerm

Visual processing / mechanical energy / motion energy pathways / sub-systems / motion energy gist / neuromorphic computing / Energy similarity measures / motion energy pathway value / Energy-based / cortical visual information processing pathway / car flows / motion energy / motion energy pathway / physical systems / learning algorithms / energy / /

Organization

National Science Foundation / Perception∗ Ricky J. Sethi UC Riverside Amit K. Roy-Chowdhury UC Riverside Saad Ali Robotics Institute / Dorsal Motion Energy Pathway / Carnegie Mellon University / University of Rochester / Pattern Analysis and Machine Intelligence / /

Person

Saad Ali / R. Chellappa / V / Shape Pathway (Ventral) / Amit K. Roy-Chowdhury / Ricky J. Sethi / /

Position

representative / Neural model for biological movement recognition / /

Product

SMetric / Precision- / Precision / /

PublishedMedium

IEEE Transactions on Pattern Analysis and Machine Intelligence / Nature Reviews Neuroscience / Journal of Neuroscience / /

Technology

Neuroscience / generalized MHT algorithm / /

URL

http /

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