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10.1146\u002Fannurev.neuro.26.041002.131052\nBradley, 2008, Velocity computation in the primate visual system, Nature Reviews Neuroscience, 9, 686, 10.1038\u002Fnrn2472\nBrouwer, 2002, Perception of acceleration with short presentation times: Can acceleration be used in interception?, Perception and Psychophysics, 64, 1160, 10.3758\u002FBF03194764\nBrown, 1931, The visual perception of velocity, Psychologische Forschung, 14, 199, 10.1007\u002FBF00403873\nBurr, 2011, Motion psychophysics: 1985–2010, Vision Research, 51, 1431, 10.1016\u002Fj.visres.2011.02.008\nCalderone, 1989, Visual acceleration detection: Effect of sign and motion orientation, Perception and Psychophysics, 45, 391, 10.3758\u002FBF03210711\nCameron, 1992, Spatial frequency selective mechanisms underlying the motion aftereffect, Vision Research, 32, 561, 10.1016\u002F0042-6989(92)90248-H\nCampbell, 1979, Stopped visual motion, Nature, 278, 192, 10.1038\u002F278192a0\nCampbell, 1981, The influence of spatial frequency and contrast on the perception of moving patterns, Vision Research, 21, 713, 10.1016\u002F0042-6989(81)90080-8\nCavanaugh, 2002, Nature and interaction of signals from the receptive field center and surround in macaque V1 neurons, Journal of Neurophysiology, 88, 2530, 10.1152\u002Fjn.00692.2001\nClifford, 2003, Fundamental mechanisms of visual motion detection: Models, cells and functions, Progress in Neurobiology, 68, 409, 10.1016\u002FS0301-0082(02)00154-5\nClifford, 1996, Psychophysics of motion adaptation parallels insect electrophysiology, Current Biology, 6, 1340, 10.1016\u002FS0960-9822(02)70721-5\nClifford, 1999, Adaptation to temporal modulation can enhance differential speed sensitivity, Vision Research, 39, 4324, 10.1016\u002FS0042-6989(99)00151-0\nCohen, 1965, Adaptation effects and after effects of moving patterns viewed in the periphery of the visual field, Scandinavian Journal of Psychology, 6, 257, 10.1111\u002Fj.1467-9450.1965.tb01043.x\nDe Bruyn, 1988, Human velocity 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I. 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Advance online publication",{"doi":496},{"id":1740,"text":1741,"url":1742,"identifiers":1743},"1a0bccf6-2422-48f5-83d6-4ef7d696203a","Michael, 2014, Priming by the variability of visual information, Proceedings of the National Academy of Sciences of the United States of America, 111, 7873, 10.1073\u002Fpnas.1308674111","https:\u002F\u002Fpnas.org\u002Fdoi\u002Ffull\u002F10.1073\u002Fpnas.1308674111",{"doi":1744},"10.1073\u002Fpnas.1308674111",{"id":1746,"text":1747,"url":1748,"identifiers":1749},"7e5dda04-148e-4b33-99d3-3cc4b132ed8d","Mitchell, 1976, Does the tilt after-effect occur in the oblique meridian?, Vision Research, 16, 609, 10.1016\u002F0042-6989(76)90007-9","https:\u002F\u002Flinkinghub.elsevier.com\u002Fretrieve\u002Fpii\u002F0042698976900079",{"doi":1750},"10.1016\u002F0042-6989(76)90007-9",{"id":1752,"text":1753,"url":1754,"identifiers":1755},"3aee4fdf-42af-4e0c-9a03-c737aff2de7e","Morgan, 2008, A “dipper” function for texture discrimination based on orientation variance, Journal of Vision, 8, 9, 10.1167\u002F8.11.9","http:\u002F\u002Fjov.arvojournals.org\u002FArticle.aspx?doi=10.1167\u002F8.11.9",{"doi":1756},"10.1167\u002F8.11.9",{"id":1758,"text":1759,"url":1760,"identifiers":1761},"e2364973-a7e2-4318-b7da-4eeef07b822a","Norman, 2015, Direct encoding of orientation variance in the visual system, Journal of Vision, 15, 3, 10.1167\u002F15.4.3","http:\u002F\u002Fjov.arvojournals.org\u002Farticle.aspx?doi=10.1167\u002F15.4.3",{"doi":1762},"10.1167\u002F15.4.3",{"id":1764,"text":1765,"url":1766,"identifiers":1767},"692c992d-0909-47cc-b929-d13f00d6a004","Payzan-LeNestour, 2016, Variance after-effects distort risk perception in humans, Current Biology, 26, 1, 10.1016\u002Fj.cub.2016.04.023","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0960982216303451",{"doi":1768},"10.1016\u002Fj.cub.2016.04.023",{"id":1770,"text":1771,"url":1772,"identifiers":1773},"6382e055-3e02-41f7-85a7-be6663b1d6da","Pelli, 1997, The VideoToolbox 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