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Visual salience detection originated over 500 million years ago and is one of nature's most efficient mechanisms.
Visual detection of spatial contrast; Influence of location in the visual field, target extent and illuminance level
Koenderink, J.J., Doorn, A.J.v.: · 1978
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Shifts in selective visual attention: towards the underlying neural circuitry
Koch, C., Ullman, S.: · 1985
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Foveal scale-space and the linear increase of receptive field size as a function of eccentricity
Lindeberg, T., Florack, L.: · 1994
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Evolution of Phototransduction, Vertebrate Photoreceptors and Retina
Lamb, T.D.: · 1995
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Foundations of Vision
Wandell, B.A.: · 1995
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Rehabilitation of gamma
Poynton, C.A.: · 1998
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Fixation Maps: Quantifying Eye-movement Traces
Wooding, D.S.: · 2002
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Components of bottom-up gaze allocation in natural images
Peters, R.J., Iyer, A., Itti, L., Koch, C.: · 2005
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High frequency edges (but not contrast) predict where we fixate: A Bayesian system identification analysis
Baddeley, R.J., Tatler, B.W.: · 2006
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Optimization of single-photon response transmission at the rod-to-rod bipolar synapse
Okawa, H., Sampath, A.P.: · 2007
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Predicting visual fixations on video based on low-level visual features
Le Meur, O., Le Callet, P., Barba, D.: · 2007
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What’s color got to do with it? The influence of color on visual attention in different categories
Frey, H.P., Honey, C., König, P.: · 2008
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Front-End Vision and Multi-Scale Image Analysis: Multi-scale Computer Vision Theory and Applications, written in Mathematica
Romeny, B.M.H.: · 2008
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Visual Attention
McMains, S.A., Kastner, S.: · 2009
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The evolution of eyes and visually guided behaviour
Nilsson, D.E.: · 2009
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How many pixels make an image?
Torralba, A.: · 2009
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Learning to predict where humans look
Judd, T., Ehinger, K., Durand, F., Torralba, A.: · 2009
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Colour Saliency on Video
Dorr, M., Vig, E., Barth, E.: · 2010
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Color to Gray: Attention Preservation
Yang, Y., Song, M., Bu, J., Chen, C., Jin, C.: · 2010
Cited alongside, same era.
Fixations on low-resolution images
Judd, T., Durand, F., Torralba, A.: · 2011
Cited alongside, same era.
General principles in motion vision: color blindness of object motion depends on pattern velocity in honeybee and goldfish
Stojcev, M., Radtke, N., D’Amaro, D., Dyer, A.G., Neumeyer, C.: · 2011
Cited alongside, same era.
Visual attention in a complex search task differs between honeybees and bumblebees
Morawetz, L., Spaethe, J.: · 2012
Cited alongside, same era.
When viewing natural scenes, do abnormal colors impact on spatial or temporal parameters of eye movements?
Ho-Phuoc, T., Guyader, N., Landragin, F., Guérin-Dugué, A.: · 2012
Cited alongside, same era.
What stands out in a scene? A study of human explicit saliency judgment
The forest or the trees: preference for global over local image processing is reversed by prior experience in honeybees
Avarguès-Weber, A., Dyer, A.G., Ferrah, N., Giurfa, M.: · 2015
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Modeling peripheral visual acuity enables discovery of gaze strategies at multiple time scales during natural scene search
Ramkumar, P., Fernandes, H., Kording, K., Segraves, M.: · 2015
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SALICON: Reducing the Semantic Gap in Saliency Prediction by Adapting Deep Neural Networks
Huang, X., Shen, C., Boix, X., Zhao, Q.: · 2015
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Does color influence eye movements while exploring videos?
Hamel, S., Houzet, D., Pellerin, D., Guyader, N.: · 2015
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CAT2000: A Large Scale Fixation Dataset for Boosting Saliency Research
Borji, A., Itti, L.: · 2015
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Borji, A., Sihite, D.N., Itti, L.: · 2013
Cited alongside, same era.
Blue colour preference in honeybees distracts visual attention for learning closed shapes
Morawetz, L., Svoboda, A., Spaethe, J., Dyer, A.G.: · 2013
Cited alongside, same era.
Visual saliency detection using information divergence
Hou, W., Gao, X., Tao, D., Li, X.: · 2013
Cited alongside, same era.
A multi-resolution saliency framework to drive foveation
Advani, S., Sustersic, J., Irick, K., Narayanan, V.: · 2013
Cited alongside, same era.
Superior Colliculus and Visual Spatial Attention
Krauzlis, R.J., Lovejoy, L.P., Zénon, A.: · 2013
Cited alongside, same era.
Analysis of Scores, Datasets, and Models in Visual Saliency Prediction
Borji, A., Tavakoli, H.R., Sihite, D.N., Itti, L.: · 2013
Cited alongside, same era.
A Comparative Study of Fixation Density Maps
Engelke, U., Liu, H., Wang, J., Le Callet, P., Heynderickx, I., Zepernick, H.J., Maeder, A.: · 2013
Cited alongside, same era.
Top down saliency detection via Kullback-Leibler divergence for object recognition
Liang, J., Zhang, Y.: · 2015
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Theories of Focal and Peripheral Attention
Juola, J.F.: · 2016
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DeepGaze II: Reading fixations from deep features trained on object recognition
Kümmerer, M., Wallis, T.S.A., Bethge, M.: · 2016
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Predicting Human Eye Fixations via an LSTM-based Saliency Attentive Model
Cornia, M., Baraldi, L., Serra, G., Cucchiara, R.: · 2016
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Processing of Extremely High Resolution LiDAR and RGB Data
Vo, A.V., Truong-Hong, L., Laefer, D.F., Tiede, D., d’Oleire Oltmanns, S., Baraldi, A., Shimoni, M., Moser, G., Tuia, D.: · 2016
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Contribution of color in saliency model for videos
Hamel, S., Guyader, N., Pellerin, D., Houzet, D.: · 2016
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What do different evaluation metrics tell us about saliency models?
Bylinskii, Z., Judd, T., Oliva, A., Torralba, A., Durand, F.: · 2016
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DeepFix: A Fully Convolutional Neural Network for Predicting Human Eye Fixations
Kruthiventi, S.S.S., Ayush, K., Babu, R.V.: · 2017
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Deep Visual Attention Prediction
Wang, W., Shen, J.: · 2017
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How is visual salience computed in the brain? Insights from behaviour, neurobiology and modelling
Veale, R., Hafed, Z.M., Yoshida, M.: · 2017
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Superior colliculus encodes visual saliency before the primary visual cortex
White, B.J., Kan, J.Y., Levy, R., Itti, L., Munoz, D.P.: · 2017
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Saliency Revisited: Analysis of Mouse Movements versus Fixations
Tavakoli, H.R., Ahmed, F., Borji, A., Laaksonen, J.: · 2017
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