Title :
Identification of a layer of spatially distributed motion detectors in insect vision
Author :
Hidayat, Egi ; Medvedev, Alexander ; Nordstrom, Karin
Author_Institution :
Dept. of Inf. Technol., Uppsala Univ., Uppsala, Sweden
Abstract :
In biology, the detection of visual motion is typically modeled via a set of elementary motion detectors (EMDs) forming a spatially distributed network. This paper summarizes recent results on estimating the dynamics of such an EMD construct from a biologically measured combination of their output signals. In particular, three interconnected problems pertaining to the field of system identification are treated. First, the visual stimuli design is discussed, namely the spatial excitation properties of multi-frequency sinusoidal gratings as these are typically utilized in biology. Second, the identification of EMD dynamics in the Laguerre domain from temporally restricted data sets is presented. Finally, a sparse optimization approach to the estimation of the weights of individual EMDs is described. The utilized design and estimation techniques are illustrated by simulation and experimental data from motion sensitive neurons in flies.
Keywords :
neurophysiology; optimisation; sparse matrices; stochastic processes; vision; EMD dynamics; Laguerre domain; elementary motion detectors; insect vision; motion sensitive neurons; multifrequency sinusoidal gratings; sparse optimization approach; spatial distributed motion detector layer; spatial distributed network; spatial excitation properties; system identification; visual motion detection; visual stimuli design; Biological system modeling; Estimation; Gratings; Insects; Telecommunications; Visualization;
Conference_Titel :
Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT), 2014 6th International Congress on
Conference_Location :
St. Petersburg
DOI :
10.1109/ICUMT.2014.7002130