Stereoscopic depth perception using a model based on the primary visual cortex

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Abstract

This work describes an approach inspired by the primary visual cortex using the stimulus response of the receptive field profiles of binocular cells for disparity computation. Using the energy model based on the mechanism of log-Gabor filters for disparity encodings, we propose a suitable model to consistently represent the complex cells by computing the wide bandwidths of the cortical cells. This way, the model ensures the general neurophysiological findings in the visual cortex (V1), emphasizing the physical disparities and providing a simple selection method for the complex cell response. The results suggest that our proposed approach can achieve better results than a hybrid model with phase-shift and positionshift using position disparity alone. © 2013 Faria et al.

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APA

Da C. E C. Faria, F., Batista, J., & Araújo, H. (2013). Stereoscopic depth perception using a model based on the primary visual cortex. PLoS ONE, 8(12). https://doi.org/10.1371/journal.pone.0080745

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