Scene perception from central to peripheral vision.
暂无分享,去创建一个
Lester C. Loschky | Antje Nuthmann | Lester C Loschky | Francesca C. Fortenbaugh | Dennis M Levi | Francesca C Fortenbaugh | D. Levi | A. Nuthmann
[1] H Summala,et al. Driving experience and perception of the lead car's braking when looking at in-car targets. , 1998, Accident; analysis and prevention.
[2] Ryan V. Ringer,et al. Impairing the useful field of view in natural scenes: Tunnel vision versus general interference. , 2016, Journal of vision.
[3] D. Roenker,et al. Age and visual search: expanding the useful field of view. , 1988, Journal of the Optical Society of America. A, Optics and image science.
[4] Miguel P Eckstein,et al. Attentional Cues in Real Scenes, Saccadic Targeting, and Bayesian Priors , 2005, Psychological science.
[5] Kathleen A. Turano,et al. Optic-flow and egocentric-direction strategies in walking: Central vs peripheral visual field , 2005, Vision Research.
[6] H. BOUMA,et al. Interaction Effects in Parafoveal Letter Recognition , 1970, Nature.
[7] K. Rayner,et al. Covert visual attention and extrafoveal information use during object identification , 1989, Perception & psychophysics.
[8] Muriel Boucart,et al. Finding faces, animals, and vehicles in far peripheral vision. , 2016, Journal of vision.
[9] Christopher A. Baldassano,et al. Pinpointing the peripheral bias in neural scene-processing networks during natural viewing. , 2016, Journal of vision.
[10] A. Nuthmann. How do the regions of the visual field contribute to object search in real-world scenes? Evidence from eye movements. , 2014, Journal of experimental psychology. Human perception and performance.
[11] Jeffrey M. Zacks,et al. Ambient and focal visual processing of naturalistic activity. , 2016, Journal of vision.
[12] George L. Malcolm,et al. Making Sense of Real-World Scenes , 2016, Trends in Cognitive Sciences.
[13] Wilson S. Geisler,et al. Real-time foveated multiresolution system for low-bandwidth video communication , 1998, Electronic Imaging.
[14] Lester C. Loschky,et al. The contributions of central versus peripheral vision to scene gist recognition. , 2009, Journal of vision.
[15] Heikki Summala,et al. Maintaining Lane Position with Peripheral Vision during In-Vehicle Tasks , 1996, Hum. Factors.
[16] G. Underwood,et al. (www.interscience.wiley.com) DOI: 10.1002/acp.806 Attending to the Peripheral World While Driving , 2022 .
[17] D. Levi,et al. Visual crowding: a fundamental limit on conscious perception and object recognition , 2011, Trends in Cognitive Sciences.
[18] Bruce Abernethy,et al. Gaze-contingent training enhances perceptual skill acquisition. , 2016, Journal of vision.
[19] Michelle R. Greene,et al. Scene categorization at large visual eccentricities , 2013, Vision Research.
[20] D. Levi,et al. The two-dimensional shape of spatial interaction zones in the parafovea , 1992, Vision Research.
[21] Simon P. Liversedge,et al. The effect of the first glimpse at a scene on eye movements during search , 2012, Psychonomic bulletin & review.
[22] R. Rosenholtz. Capabilities and Limitations of Peripheral Vision. , 2016, Annual review of vision science.
[23] J. Rovamo,et al. Cortical magnification factor predicts the photopic contrast sensitivity of peripheral vision , 1978, Nature.
[24] H. Lau,et al. Empirical support for higher-order theories of conscious awareness , 2011, Trends in Cognitive Sciences.
[25] Tristan A. Chaplin,et al. Representation of central and peripheral vision in the primate cerebral cortex: Insights from studies of the marmoset brain , 2015, Neuroscience Research.
[26] Sven Eberhardt,et al. Peripheral pooling is tuned to the localization task. , 2016, Journal of vision.
[27] George L. Malcolm,et al. Eye guidance during real-world scene search: The role color plays in central and peripheral vision. , 2016, Journal of vision.
[28] G. Underwood,et al. Driving Experience and the Functional Field of View , 1999, Perception.
[29] Benjamin D. Singer,et al. Retinotopic Organization of Human Ventral Visual Cortex , 2009, The Journal of Neuroscience.
[30] D. Levi. Crowding—An essential bottleneck for object recognition: A mini-review , 2008, Vision Research.
[31] J. Faubert,et al. Effect of visual field locus and oscillation frequencies on posture control in an ecological environment. , 2009, Journal of vision.
[32] Stefan Pollmann,et al. Impairment of visual memory for objects in natural scenes by simulated central scotomata. , 2016, Journal of vision.
[33] Ryan V. Ringer,et al. The spatiotemporal dynamics of scene gist recognition. , 2014, Journal of experimental psychology. Human perception and performance.
[34] Hugh R. Wilson,et al. 10 – THE PERCEPTION OF FORM: Retina to Striate Cortex , 1989 .
[35] Manuela Chessa,et al. A space-variant model for motion interpretation across the visual field. , 2016, Journal of vision.
[36] Melissa L.-H. Võ,et al. A glimpse is not a glimpse: Differential processing of flashed scene previews leads to differential target search benefits , 2010 .
[37] Krista A. Ehinger,et al. A general account of peripheral encoding also predicts scene perception performance. , 2016, Journal of vision.
[38] F. Previc. The neuropsychology of 3-D space. , 1998, Psychological bulletin.
[39] J. Henderson,et al. High-level scene perception. , 1999, Annual review of psychology.
[40] Ralf Engbert,et al. Coupling of attention and saccades when viewing scenes with central and peripheral degradation. , 2016, Journal of vision.
[41] Matthias Bethge,et al. Testing models of peripheral encoding using metamerism in an oddity paradigm. , 2016, Journal of vision.
[42] M G Fischman,et al. Skill level, vision, and proprioception in simple one-hand catching. , 1985, Journal of motor behavior.
[43] Kathleen A. Turano,et al. Losing sight of the bigger picture: Peripheral field loss compresses representations of space , 2007, Vision Research.
[44] G. McConkie,et al. The span of the effective stimulus during a fixation in reading , 1975 .
[45] Antje Nuthmann,et al. On the visual span during object search in real-world scenes , 2011 .
[46] Lester C. Loschky,et al. Investigating spatial vision and dynamic attentional selection using a gaze-contingent multiresolutional display. , 2002 .
[47] J. Henderson,et al. Initial scene representations facilitate eye movement guidance in visual search. , 2007, Journal of experimental psychology. Human perception and performance.
[48] A. Böckler,et al. Out of the corner of the driver's eye: Peripheral processing of hazards in static traffic scenes. , 2016, Journal of vision.
[49] I. Rentschler,et al. Peripheral vision and pattern recognition: a review. , 2011, Journal of vision.
[50] Lester C. Loschky,et al. Investigating spatial vision and dynamic attentional selection using a gaze-contingent multiresolutional display. , 2002, Journal of experimental psychology. Applied.
[51] A. Bradley,et al. Neural bandwidth of veridical perception across the visual field , 2016, Journal of vision.