E. H. Adelson and J. R. Bergen, The plenoptic function and the elements of early vision, Computational Models of Visual Processing, pp.3-20, 1991.

B. Balas, L. Nakano, and R. Rosenholtz, A summary-statistic representation in peripheral vision explains visual crowding, Journal of Vision, vol.9, pp.13-13, 2009.

W. P. Banks and H. White, Lateral interference and perceptual grouping in visual detection, Perception & Psychophysics, vol.36, pp.285-295, 1984.

B. T. Barrett, I. E. Pacey, A. Bradley, L. N. Thibos, and P. Morrill, Nonveridical visual perception in human amblyopia, Investigative Ophthalmology & Visual Science, vol.44, pp.1555-1567, 2003.

J. B. Bernard and S. T. Chung, The dependence of crowding on flanker complexity and target-flanker similarity, Journal of Vision, vol.11, pp.1-16, 2011.
URL : https://hal.archives-ouvertes.fr/hal-01515336

L. M. Binder, Constructional strategies on complex figure drawings after unilateral brain damage, Journal of Clinical Neuropsychology, vol.4, pp.51-58, 1982.

H. Bouma, Interaction effects in parafoveal letter recognition, Nature, vol.226, pp.177-178, 1970.

D. H. Brainard, The psychophysics toolbox, Spatial Vision, vol.10, issue.4, pp.433-436, 1997.

R. Chamberlain, C. Mcmanus, N. Brunswick, Q. Rankin, and H. Riley, Scratching the surface: Practice, personality, approaches to learning, and the acquisition of high-level representational drawing ability, Psychology of Aesthetics, Creativity, and the Arts, vol.9, pp.451-462, 2015.

R. Chamberlain and J. Wagemans, Visual arts training is linked to flexible attention to local and global levels of visual stimuli, Acta Psychologica, vol.161, pp.185-197, 2015.

R. Chamberlain and J. Wagemans, The genesis of errors in drawing, Neuroscience and Biobehavioral Reviews, vol.65, pp.195-207, 2016.

S. T. Chung, Size or spacing: Which limits letter recognition in people with age-related macular degeneration? Vision Research, vol.101, pp.167-176, 2014.

S. T. Chung, D. M. Levi, and G. E. Legge, Spatial-frequency and contrast properties of crowding, Vision Research, vol.41, pp.1833-1850, 2001.

S. T. Chung and J. S. Mansfield, Contrast polarity differences reduce crowding but do not benefit reading performance in peripheral vision, Vision Research, vol.49, pp.2782-2789, 2009.

D. R. Coates, J. M. Chin, and S. T. Chung, Factors affecting crowded acuity: Eccentricity and contrast, Optometry and Vision Science, vol.90, pp.628-638, 2013.

N. Congdon, Causes and prevalence of visual impairment among adults in the United States, Archives of Ophthalmology, vol.122, pp.477-485, 2004.

P. T. De-jong, Age-related macular degeneration, New England Journal of Medicine, vol.355, pp.1474-1485, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00477813

J. F. Duley, J. W. Wilkins, S. L. Hamby, D. G. Hopkins, R. D. Burwell et al., Explicit scoring criteria for the Rey-Osterrieth and Taylor complex figures, Clinical Neuropsychologist, vol.7, pp.29-38, 1993.

C. Firestone and B. J. Scholl, Cognition does not affect perception: Evaluating the evidence for 'top-down' effects, Behavioral and Brain Sciences, vol.22, pp.341-365, 2015.

J. Freeman and E. P. Simoncelli, Metamers of the ventral stream, Nature Neuroscience, vol.14, pp.1195-1201, 2011.

C. Gallagher and T. Burke, Age, gender and IQ effects on the Rey-Osterrieth Complex Figure Test, British Journal of Clinical Psychology, vol.46, pp.35-45, 2007.

S. J. Galvin, R. P. Shea, A. M. Squire, and D. G. Govan, Sharpness overconstancy in peripheral vision, Vision Research, vol.37, pp.2035-2039, 1997.

E. H. Gombrich, Art and illusion: A study in the psychology of pictorial representation, 2000.

D. M. Green and J. A. Swets, Signal detection theory and psychophysics, 1966.

J. A. Greenwood, P. J. Bex, and S. C. Dakin, Crowding changes appearance, Current Biology, vol.20, pp.496-501, 2010.

M. H. Herzog, B. Sayim, V. Chicherov, and M. Manassi, Crowding, grouping, and object recognition: A matter of appearance, Journal of Vision, vol.15, pp.1-18, 2015.

R. F. Hess, F. W. Campbell, and T. Greenhalgh, On the nature of the neural abnormality in human amblyopia; neural aberrations and neural sensitivity loss, Pflu¨gers Archiv, vol.377, pp.201-207, 1978.

J. Intriligator and P. Cavanagh, The spatial resolution of visual attention, Cognitive Psychology, vol.43, pp.171-216, 2001.

R. M. Johnson and J. J. Uhlarik, Fragmentation and identifiability of repeatedly presented brief visual stimuli, Perception & Psychophysics, vol.15, pp.533-538, 1974.

J. J. Koenderink and A. J. Van-doorn, Metamerism in complete sets of image operators, Advances in Image Understanding, vol.96, pp.113-129, 1996.

J. J. Koenderink and A. J. Van-doorn, Blur and disorder, Journal of Visual Communication and Image Representation, vol.11, pp.237-244, 2000.

F. L. Kooi, A. Toet, S. P. Tripathy, and D. M. Levi, The effect of similarity and duration on spatial interaction in peripheral vision, Spatial Vision, vol.8, pp.255-279, 1994.

W. Korte, Ü ber die Gestaltauffassung im indirekten Sehen, 1923.

P. Zeitschrift-fu¨r, , vol.93, pp.17-82

A. Kozbelt, Artists as experts in visual cognition, Visual Cognition, vol.8, pp.705-723, 2001.

G. Lange, W. Waked, S. Kirshblum, and J. Deluca, Organizational strategy influence on visual memory performance after stroke: Cortical/subcortical and left/right hemisphere contrasts, Archives of Physical Medicine and Rehabilitation, vol.81, pp.90227-90229, 2000.

J. Y. Lettvin, On seeing sidelong, The Sciences, vol.16, pp.10-20, 1976.

D. M. Levi, Crowding-An essential bottleneck for object recognition: A mini-review, Vision Research, vol.48, pp.635-654, 2008.

D. M. Levi, S. A. Klein, and Y. L. Yap, Positional uncertainty in peripheral and amblyopic vision, Vision Research, vol.27, pp.581-597, 1987.

L. Liu and A. Arditi, Apparent string shortening concomitant with letter crowding, Vision Research, vol.40, pp.1059-1067, 2000.

T. Livne and D. Sagi, Configuration influence on crowding, Journal of Vision, vol.7, pp.1-12, 2007.

D. W. Loring, G. P. Lee, and K. J. Meador, Revising the Rey-Osterrieth: Rating right hemisphere recall, Archives of Clinical Neuropsychology, vol.3, pp.239-247, 1988.

M. Malania, M. H. Herzog, and G. Westheimer, Grouping of contextual elements that affect vernier thresholds, Journal of Vision, vol.7, pp.1-7, 2007.

M. Manassi, B. Sayim, and M. H. Herzog, Grouping, pooling, and when bigger is better in visual crowding, Journal of Vision, vol.12, pp.13-13, 2012.

M. Manassi, B. Sayim, and M. H. Herzog, When crowding of crowding leads to uncrowding, Journal of Vision, vol.13, pp.10-10, 2013.

M. Martelli, N. J. Majaj, and D. G. Pelli, Are faces processed like words? A diagnostic test for recognition by parts, Journal of Vision, vol.5, pp.58-70, 2005.

M. Michel and W. S. Geisler, Intrinsic position uncertainty explains detection and localization performance in peripheral vision, Journal of Vision, vol.11, pp.1-18, 2011.

T. E. Oliphant, Python for scientific computing, Computing in Science & Engineering, vol.9, pp.10-20, 2007.

P. A. Osterrieth, Le test de copie d'une figure complexe; contribution a`l'e´tude de la perception et de la me´moire, Archives de Psychologie, vol.30, pp.206-356, 1944.

D. G. Pelli, M. Palomares, and N. J. Majaj, Crowding is unlike ordinary masking: Distinguishing feature integration from detection, Journal of Vision, vol.4, pp.1136-1169, 2004.

D. G. Pelli and K. A. Tillman, The uncrowded window of object recognition, Nature Neuroscience, vol.11, pp.1129-1135, 2008.

D. G. Pelli, K. A. Tillman, J. Freeman, M. Su, T. D. Berger et al., Crowding and eccentricity determine reading rate, Journal of Vision, vol.7, pp.1-36, 2007.

F. Perdreau and P. Cavanagh, The artist's advantage: Better integration of object information across eye movements. i-Perception, vol.4, pp.380-395, 2013.

F. Perdreau and P. Cavanagh, Is artists' perception more veridical?, Frontiers in Neuroscience, vol.7, p.6, 2013.

F. Perdreau and P. Cavanagh, Drawing skill is related to the efficiency of encoding object structure. i-Perception, vol.5, pp.101-119, 2014.

Y. Petrov and O. Meleshkevich, Asymmetries and idiosyncratic hot spots in crowding, Vision Research, vol.51, pp.1117-1123, 2011.

F. Pe´rez and B. E. Granger, IPython: A system for interactive scientific computing, Computing in Science and Engineering, vol.9, pp.21-29, 2007.

Z. Pylyshyn, Is vision continuous with cognition?: The case for cognitive impenetrability of visual perception, Behavioral and Brain Sciences, vol.22, pp.341-365, 1999.

A. Rey, L'examen psychologique dans les cas d'ence´phalopathie traumatique (Les problems, 1941.

, Archives de Psychologie, vol.28, pp.215-285

T. P. Saarela, B. Sayim, G. Westheimer, and M. H. Herzog, Global stimulus configuration modulates crowding, Journal of Vision, vol.9, pp.5-5, 2009.

B. Sayim and P. Cavanagh, What line drawings reveal about the visual brain, Frontiers in Human Neuroscience, vol.5, p.118, 2011.

B. Sayim and P. Cavanagh, Grouping and crowding affect target appearance over different spatial scales, PLoS One, vol.8, p.71188, 2013.

B. Sayim, J. A. Greenwood, and P. Cavanagh, Foveal target repetitions reduce crowding, Journal of Vision, vol.14, pp.1-12, 2014.

B. Sayim, E. Myin, and T. Van-uytven, Prior knowledge modulates peripheral color appearance, Proceedings of the International Colour Association (AIC), Tokyo Midterm meeting, pp.1147-1152, 2015.

B. Sayim and J. Wagemans, Drawings of the visual periphery reveal appearance changes in crowding, Perception ECVP Abstract, vol.42, pp.229-229, 2013.

B. Sayim, G. Westheimer, and M. H. Herzog, Contrast polarity, chromaticity, and stereoscopic depth modulate contextual interactions in vernier acuity, Journal of Vision, vol.8, pp.1-9, 2008.

B. Sayim, G. Westheimer, and M. H. Herzog, Gestalt factors modulate basic spatial vision, Psychological Science, vol.21, pp.641-644, 2010.

B. Sayim, G. Westheimer, and M. H. Herzog, Quantifying target conspicuity in contextual modulation by visual search, Journal of Vision, vol.11, pp.6-6, 2011.

M. S. Shin, S. Y. Park, S. R. Park, S. H. Seol, and J. S. Kwon, Clinical and empirical applications of the Rey-Osterrieth Complex Figure Test, Nature Protocols, vol.1, pp.892-899, 2006.

R. A. Stern, E. A. Singer, L. M. Duke, N. G. Singer, C. E. Morey et al.,

E. Kaplan, The Boston qualitative scoring system for the Rey-Osterrieth complex figure: Description and interrater reliability, Clinical Neuropsychologist, vol.8, pp.309-322, 1994.

H. Strasburger, Dancing letters and ticks that buzz around aimlessly: On the origin of crowding, Perception, vol.43, pp.963-976, 2014.

H. Strasburger, L. O. Harvey, and I. Rentschler, Contrast thresholds for identification of numeric characters in direct and eccentric view, Perception & Psychophysics, vol.49, pp.495-508, 1991.

H. Strasburger, I. Rentschler, and M. Ju¨ttner, Peripheral vision and pattern recognition: A review, Journal of Vision, vol.11, pp.1-82, 2011.

H. Strasburger and N. J. Wade, James Jurin (1684-1750): A pioneer of crowding research?, Journal of Vision, vol.15, pp.1-7, 2015.

L. B. Taylor, Localization of cerebral lesions by psychological testing, Clinical Neurosurgery, vol.16, pp.269-287, 1969.

A. Toet and D. M. Levi, The two-dimensional shape of spatial interaction zones in the parafovea, Vision Research, vol.32, pp.1349-1357, 1992.

S. P. Tripathy and P. Cavanagh, The extent of crowding in peripheral vision does not scale with target size, Vision Research, vol.42, pp.2357-2369, 2002.

S. P. Tripathy, P. Cavanagh, and H. E. Bedell, Large crowding zones in peripheral vision for briefly presented stimuli, Journal of Vision, vol.14, pp.1-11, 2014.

D. P. Waber and J. M. Holmes, Assessing children's copy productions of the Rey-Osterrieth complex figure, Journal of Clinical and Experimental Neuropsychology, vol.7, pp.264-280, 1985.

D. P. Waber and J. M. Holmes, Assessing children's memory productions of the Rey-Osterrieth Complex Figure, Journal of Clinical and Experimental Neuropsychology, vol.8, pp.563-580, 1986.

J. M. Wallace, M. K. Chiu, A. S. Nandy, and B. S. Tjan, Crowding during restricted and free viewing, Vision Research, vol.84, pp.50-59, 2013.

T. S. Wallis, M. Bethge, and F. A. Wichmann, Testing models of peripheral encoding using metamerism in an oddity paradigm, Journal of Vision, vol.16, pp.1-30, 2016.

G. Westheimer, The spatial grain of the perifoveal visual field, Vision Research, vol.22, pp.157-162, 1982.

F. W. Weymouth, Visual sensory units and the minimal angle of resolution, American Journal of Ophthalmology, vol.46, pp.102-113, 1958.

D. Whitney and D. M. Levi, Visual crowding: A fundamental limit on conscious perception and object recognition, Trends in Cognitive Sciences, vol.15, pp.160-168, 2011.

D. R. Williams, Aliasing in human foveal vision, Vision Research, vol.25, issue.85, pp.90113-90113, 1985.

J. Y. Zhang, T. Zhang, F. Xue, L. Liu, and C. Yu, Legibility of Chinese characters in peripheral vision and the top-down influences on crowding, Vision Research, vol.49, pp.44-53, 2009.