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Egocentric Distance Perception Disorder in Amblyopia Cover

Egocentric Distance Perception Disorder in Amblyopia

Open Access
|Jun 2021

References

  1. 1American Academy of Ophthalmology, Chinese Ophthalmological Society, & Zhao, J. (2018). Preferred practice pattern (3rd ed.). People’s Medical Publishing House.
  2. 2Bao, M., Dong, B., Liu, L., Engel, S. A., & Jiang, Y. (2018). The best of both worlds: Adaptation during natural tasks produces long-lasting plasticity in perceptual ocular dominance. Psychological Science, 29(1), 120. DOI: 10.1177/0956797617728126
  3. 3Bao, M., & Engel, S. A. (2019). Augmented reality as a tool for studying visual plasticity: 2009 to 2018. Current Directions in Psychological Science, 28(6), 574580. DOI: 10.1177/0963721419862290
  4. 4Birch, E. E. (2013). Amblyopia and binocular vision. Progress in Retinal and Eye Research, 33(1), 6784. DOI: 10.1016/j.preteyeres.2012.11.001
  5. 5Blake, R., & Sekuler, R. (2006). Seeing a three-dimensional world. In R. Blake & R. Sekuler (Eds.), Perception (5th) (pp. 273315). McGraw-Hill Higher Education.
  6. 6Buckley, J. G., Pacey, I. E., Panesar, G. K., Scally, A., & Barrett, B. T. (2015). Prehension of a flanked target in individuals with amblyopia. Investigative Ophthalmology and Visual Science, 56(12), 75687580. DOI: 10.1167/iovs.15-16860
  7. 7Carlton, J., & Kaltenthaler, E. (2011). Amblyopia and quality of life: a systematic review. Eye, 25(4), 403413. DOI: 10.1038/eye.2011.4
  8. 8Chen, X., Fu, Z., Yu, J., Ding, H., Bai, J., Chen, J., Gong, Y., Zhu, H., Yu, R., & Liu, H. (2016). Prevalence of amblyopia and strabismus in Eastern China: results from screening of preschool children aged 36–72 months. The British Journal of Ophthalmology, 100(4), 515519. DOI: 10.1136/bjophthalmol-2015-306999
  9. 9Chen, Y., Chen, X., Chen, J., Zheng, J., Xu, J., & Yu, X. (2016). Longitudinal impact on quality of life for school-aged children with amblyopia treatment: Perspective from children. Current Eye Research, 41(2), 208214. DOI: 10.3109/02713683.2015.1011280
  10. 10Cole, S. R., Beck, R. W., Moke, P. S., Celano, M. P., Drews, C. D., Repka, M. X., Holmes, J. M., Birch, E. E., Kraker, R. T., & Kip, K. E. (2001). The amblyopia treatment index. Journal of AAPOS, 5(4), 250254. DOI: 10.1067/mpa.2001.117097
  11. 11Cutting, J. E., & Vishton, P. M. (1995). Perceiving layout and knowing distances: The integration, relative potency, and contextual use of different information about depth. Handbook of Perception and Cognition, Vol 5; Perception of Space and Motion, 22(5), 69117. DOI: 10.1016/B978-012240530-3/50005-5
  12. 12Dong, B., Holm, L., & Bao, M. (2017). Cortical mechanisms for afterimage formation: Evidence from interocular grouping. Scientific Reports, 7(41101), 113. DOI: 10.1038/srep41101
  13. 13Dong, B., Jiang, Y., Engel, S. A., & Bao, M. (2014). Adaptation to patch-wise complementary video reduces perceptual ocular dominance. Journal of Vision, 14(10), 401401. DOI: 10.1167/14.10.401
  14. 14Fielder, A. R. (2002). Amblyopia and disability. In M. Moseley & A. R. Fielder (Eds.), Amblyopia: a multidisciplinary approach (pp. 105114). Butterworth Heinemann. DOI: 10.1016/B978-0-7506-4691-8.50010-4
  15. 15Fini, C., Brass, M., & Committeri, G. (2015). Social scaling of extrapersonal space: Target objects are judged as closer when the reference frame is a human agent with available movement potentialities. Cognition, 134, 5056. DOI: 10.1016/j.cognition.2014.08.014
  16. 16Fini, C., Costantini, M., & Committeri, G. (2014). Sharing space: The presence of other bodies extends the space judged as near. PLoS ONE, 9(12), e114719. DOI: 10.1371/journal.pone.0114719
  17. 17Fu, J., Li, S. Y. S. M., Liu, L. R., Li, J. L., Li, S. Y. S. M., Zhu, B. D., Li, H., Yang, Z., Li, L., & Wang, N. L. (2014). Prevalence of amblyopia and strabismus in a population of 7th-grade junior high school students in central china: The anyang childhood eye study (ACES). Ophthalmic Epidemiology, 21(3), 197203. DOI: 10.3109/09286586.2014.904371
  18. 18Gibson, J. J. (1950). The perception of visual world. The Riverside Press. DOI: 10.2307/1418003
  19. 19Gibson, J. J. (1979). The ecological approach to visual perception. Psychology Press.
  20. 20Gilinsky, A. S. (1951). Perceived size and distance in visual space. Psychological Review, 58(6), 460482. DOI: 10.1037/h0061505
  21. 21Grant, S., & Conway, M. L. (2015). Reach-to-precision grasp deficits in amblyopia: Effects of object contrast and low visibility. Vision Research, 114, 100110. DOI: 10.1016/j.visres.2014.11.009
  22. 22Grant, S., Melmoth, D. R., Morgan, M. J., & Finlay, A. L. (2007). Prehension deficits in amblyopia. Investigative Ophthalmology and Visual Science, 48(3), 11391148. DOI: 10.1167/iovs.06-0976
  23. 23Grant, S., & Moseley, M. J. (2011). Amblyopia and real-world visuomotor tasks. Strabismus, 19(3), 119128. DOI: 10.3109/09273972.2011.600423
  24. 24Grant, S., Suttle, C., Melmoth, D. R., Conway, M. L., & Sloper, J. J. (2014). Age- and stereovision-dependent eye–hand coordination deficits in children with amblyopia and abnormal binocularity. Investigative Ophthalmology and Visual Science, 55(9), 56875701. DOI: 10.1167/iovs.14-14745
  25. 25Grüsser, O.-J. (1983). Multimodal structure of the extrapersonal space. In A. Hein & M. Jeannerod (Eds.), Spatially oriented behavior (pp. 327352). Springer. DOI: 10.1007/978-1-4612-5488-1_18
  26. 26Harrad, R., Sengpiel, F., & Blakemore, C. (1996). Physiology of suppression in strabismic amblyopia. British Journal of Ophthalmology, 80, 373377. DOI: 10.1136/bjo.80.4.373
  27. 27Hashemi, H., Pakzad, R., Yekta, A., Bostamzad, P., Aghamirsalim, M., Sardari, S., Valadkhan, M., Pakbin, M., Heydarian, S., & Khabazkhoob, M. (2018). Global and regional estimates of prevalence of amblyopia: A systematic review and meta-analysis. Strabismus, 00(00), 116. DOI: 10.1080/09273972.2018.1500618
  28. 28Hatt, S. R., Leske, D. A., Bradley, E. A., Cole, S. R., & Holmes, J. M. (2009). Development of a quality-of-life questionnaire for adults with strabismus. Ophthalmology, 116(1), 112. DOI: 10.1016/j.ophtha.2008.08.043
  29. 29Hatt, S. R., Leske, D. A., Yamada, T., Bradley, E. A., Cole, S. R., & Holmes, J. M. (2010). Development and initial validation of quality-of-life questionnaires for intermittent exotropia. Ophthalmology, 117(1), 163168.e1. DOI: 10.1016/j.ophtha.2009.06.038
  30. 30He, Z. J., Wu, B., Ooi, T. L., Yarbrough, G., & Wu, J. (2004). Judging egocentric distance on the ground: Occlusion and surface integration. Perception, 33, 789806. DOI: 10.1068/p5256a
  31. 31Hess, R. F., Campbell, F. W., & Zimmern, R. (1980). Differences in the neural basis of human amblyopias: the effect of mean luminance. Vision Research, 20, 295305. DOI: 10.1016/0042-6989(80)90016-4
  32. 32Hess, R. F., Thompson, B., & Baker, D. H. (2014). Binocular vision in amblyopia: Structure, suppression and plasticity. Ophthalmic and Physiological Optics, 34(2), 146162. DOI: 10.1111/opo.12123
  33. 33Holmes, J. M., Beck, R. W., Kraker, R. T., Cole, S. R., Repka, M. X., Birch, E. E., Felius, J., Christiansen, S. P., Coats, D. K., & Kulp, M. T. (2003). Impact of patching and atropine treatment on the child and family in the amblyopia treatment study. Archives of Ophthalmology, 121(11), 16251632. DOI: 10.1001/archopht.121.11.1625
  34. 34Howard, I. P. (2012). Volume 1: Basic mechamisms. In I. P. Howard (Ed.), perceiving in depth (pp. 162182). Oxford University Press.
  35. 35Hrisos, S., Clarke, M. P., Kelly, T., Henderson, J., & Wright, C. M. (2006). Unilateral visual impairment and neurodevelopmental performance in preschool children. British Journal of Ophthalmology, 90(7), 836838. DOI: 10.1136/bjo.2006.090910
  36. 36Hu, B., Kane-Jackson, R., & Niebur, E. (2016). A proto-object based saliency model in three-dimensional space. Vision Research, 119, 4249. DOI: 10.1016/j.visres.2015.12.004
  37. 37Huang, D., Chen, X., Zhu, H., Ding, H., Bai, J., Chen, J., Fu, Z., Pan, C. W., & Liu, H. (2018). Prevalence of amblyopia and its association with refraction in Chinese preschool children aged 36-48 months. British Journal of Ophthalmology, 102(6), 767771. DOI: 10.1136/bjophthalmol-2016-310083
  38. 38Koc, F., Erten, Y., & Yurdakul, N. S. (2013). Does restoration of binocular vision make any difference in the quality of life in adult strabismus. British Journal of Ophthalmology, 97(11), 14251430. DOI: 10.1136/bjophthalmol-2013-303704
  39. 39Lenoir, M. (2007). Ecological relevance of stereopsis in one-handed ball-catching. Perceptual and Motor Skills, 89(6), 495. DOI: 10.2466/pms.1999.89.2.495
  40. 40Levi, D. M., Knill, D. C., & Bavelier, D. (2015). Stereopsis and amblyopia: A mini-review. Vision Research, 114, 1730. DOI: 10.1016/j.visres.2015.01.002
  41. 41Maag, U., Vanasse, C., Dionne, G., & Laberge-Nadeau, C. (1997). Taxi drivers’ accidents: How binocular vision problems are related to their rate and severity in terms of the number of victims. Accident Analysis and Prevention, 29(2), 217224. DOI: 10.1016/S0001-4575(96)00075-9
  42. 42Mazyn, L. I. N., Lenoir, M., Montagne, G., & Savelsbergh, G. J. P. (2004). The contribution of stereo vision to one-handed catching. Experimental Brain Research, 157(3), 383390. DOI: 10.1007/s00221-004-1926-x
  43. 43McKee, S. P., Levi, D. M., & Movshon, J. A. (2003). The pattern of visual deficits in amblyopia. Journal of Vision, 3(5), 380405. DOI: 10.1167/3.5.5
  44. 44Melmoth, D. R., Finlay, A. L., Morgan, M. J., & Grant, S. (2009). Grasping deficits and adaptations in adults with stereo vision losses. Investigative Ophthalmology and Visual Science, 50(8), 37113720. DOI: 10.1167/iovs.08-3229
  45. 45Melmoth, D. R., & Grant, S. (2006). Advantages of binocular vision for the control of reaching and grasping. Experimental Brain Research, 171(3), 371388. DOI: 10.1007/s00221-005-0273-x
  46. 46Niechwiej-Szwedo, E., Goltz, H. C., Chandrakumar, M., Hirji, Z., Douglas Crawford, J., & Wong, A. M. F. (2011). Effects of anisometropic amblyopia on visuomotor behavior, part 2: Visually guided reaching. Investigative Ophthalmology and Visual Science, 52(2), 795803. DOI: 10.1167/iovs.10-6092
  47. 47Niechwiej-Szwedo, E., Goltz, H. C., Chandrakumar, M., Hirji, Z., & Wong, A. M. F. (2011). Effects of anisometropic amblyopia on visuomotor behavior, III: Temporal eye-hand coordination during reaching. Investigative Ophthalmology and Visual Science, 52(8), 58535861. DOI: 10.1167/iovs.11-7314
  48. 48Niechwiej-Szwedo, E., Goltz, H. C., Chandrakumar, M., & Wong, A. M. F. (2014). Effects of strabismic amblyopia and strabismus Without amblyopia on visuomotor behavior: III. Temporal eye–hand coordination during reaching. Investigative Ophthalmology and Visual Science, 55(12), 78317838. DOI: 10.1167/iovs.14-15507
  49. 49Niechwiej-Szwedo, E., Goltz, H. C., Colpa, L., Chandrakumar, M., & Wong, A. M. F. (2017). Effects of reduced acuity and stereo acuity on saccades and reaching movements in adults with amblyopia and strabismus. Investigative Ophthalmology and Visual Science, 58(2), 914921. DOI: 10.1167/iovs.16-20727
  50. 50Niechwiej-Szwedo, E., Kennedy, S. A., Colpa, L., Chandrakumar, M., Goltz, H. C., & Wong, A. M. F. (2012). Effects of induced monocular blur versus anisometropic amblyopia on saccades, reaching, and eye-hand coordination. Investigative Ophthalmology and Visual Science, 53(8), 43544362. DOI: 10.1167/iovs.12-9855
  51. 51O’Connor, A. R., Birch, E. E., Anderson, S., & Draper, H. (2010). The functional significance of stereopsis. Investigative Ophthalmology and Visual Science, 51(4), 20192023. DOI: 10.1167/iovs.09-4434
  52. 52Ooi, T. L., & He, Z. J. (2007). A distance judgment function based on space perception mechanisms: Revisiting Gilinsky’s (1951) equation. Psychological Review, 114(2), 441454. DOI: 10.1037/0033-295X.114.2.441
  53. 53Ooi, T. L., & He, Z. J. (2015). Space perception of strabismic observers in the real world environment. Investigative Ophthalmology and Visual Science, 56(3), 17611768. DOI: 10.1167/iovs.14-15741
  54. 54Ooi, T. L., Wu, B., & He, Z. J. (2001). Distance determined by the angular declination below the horizon. Nature, 413(8), 197200. DOI: 10.1038/35102562
  55. 55Ooi, T. L., Wu, B., & He, Z. J. (2006). Perceptual space in the dark affected by the intrinsic bias of the visual system. Perception, 35(5), 605624. DOI: 10.1068/p5492
  56. 56Owsley, C., & McGwin, G. (1999). Vision impairment and driving. Survey of Ophthalmology, 43(6), 535550. DOI: 10.1016/S0039-6257(99)00035-1
  57. 57Owsley, C., & McGwin, G. (2010). Vision and driving. Vision Research, 50(23), 23482361. DOI: 10.1016/j.visres.2010.05.021
  58. 58Pan, C. W., Chen, X., Zhu, H., Fu, Z., Zhong, H., Li, J., Huang, D., & Liu, H. (2017). School-based assessment of amblyopia and strabismus among multiethnic children in rural China. Scientific Reports, 7(1), 17. DOI: 10.1038/s41598-017-13926-8
  59. 59Population Census Office under the State Council, & Department of Population and Employment Statistics National Bureau of Statistics. (2012). Tabulation on the population census of the people’s republic of china by county. China Statistics Press.
  60. 60Previc, F. H. (1998). The neuropsychology of 3-D space. Psychological Bulletin, 124(2), 123164. DOI: 10.1037/0033-2909.124.2.123
  61. 61Proffitt, D. R. (2006a). Distance perception. Current Directions in Psychological Research, 15(3), 131135. DOI: 10.1111/j.0963-7214.2006.00422.x
  62. 62Proffitt, D. R. (2006b). Embodied perception of action economy. Psychological Science, 1(2), 110122. DOI: 10.1111/j.1745-6916.2006.00008.x
  63. 63Proffitt, D. R., Stefanucci, J., Banton, T., & Epstein, W. (2003). The role of effort in perceiving distance. Psychological Science, 14(2), 106112. DOI: 10.1111/1467-9280.t01-1-01427
  64. 64Rand, K. M., Barhorst-Cates, E. M., Kiris, E., Thompson, W. B., & Creem-Regehr, S. H. (2018). Going the distance and beyond: simulated low vision increases perception of distance traveled during locomotion. Psychological Research, 114. DOI: 10.1007/s00426-018-1019-2
  65. 65Sinai, M. J., Ooi, T. L., & He, Z. J. (1998). Terrain influences the accurate judgement of distance. Nature, 395(1), 497500. DOI: 10.1038/26747
  66. 66Suttle, C. M., Melmoth, D. R., Finlay, A. L., Sloper, J. J., & Grant, S. (2011). Eye-hand coordination skills in children with and without amblyopia. Investigative Ophthalmology and Visual Science, 52(3), 18511864. DOI: 10.1167/iovs.10-6341
  67. 67Tarampi, M. R., Creem-Regehr, S. H., & Thompson, W. B. (2010). Intact spatial updating with severely degraded vision. Attention, Perception, & Psychophysics, 72(1), 2327. DOI: 10.3758/APP.72.1.23
  68. 68Thomson, J. A. (1983). Is continuous visual monitoring necessary in visually guided locomotion? Journal of Experimental Psychology: Human Perception and Performance, 9(3), 427443. DOI: 10.1037/0096-1523.9.3.427
  69. 69United Nations, Department of Economic and Social Affairs, & Population Division. (2017). World population prospects: The 2017 revision. In Key Findings and Advance Tables (ESA/P/WP/248).
  70. 70Van De Graaf, E. S., Van Der Sterre, G. W., Polling, J. R., Van Kempen, H., Simonsz, B., & Simonsz, H. J. (2004). Amblyopia & strabismus questionnaire: Design and initial validation. Strabismus, 12(3), 181193. DOI: 10.1080/09273970490491196
  71. 71Verghese, P., Tyson, T. L., Ghahghaei, S., & Fletcher, D. C. (2016). Depth perception and grasp in central field loss. Investigative Ophthalmology and Visual Science, 57(3), 14761487. DOI: 10.1167/iovs.15-18336
  72. 72Vianya-Estopa, M., Elliott, D. B., & Barrett, B. T. (2010). An evaluation of the amblyopia and strabismus questionnaire using Rasch analysis. Investigative Ophthalmology and Visual Science, 51(5), 24962503. DOI: 10.1167/iovs.09-4381
  73. 73Wang, Y., Liang, Y. B., Sun, L. P., Duan, X. R., Yuan, R. Z., Wong, T. Y., Yi, P., Friedman, D. S., Wang, N. L., & Wang, J. J. (2011). Prevalence and causes of amblyopia in a rural adult population of Chinese: The Handan Eye Study. Ophthalmology, 118(2), 279283. DOI: 10.1016/j.ophtha.2010.05.026
  74. 74Wang, Z., Ren, H., Frey, R., Liu, Y., Raphael, D., Bian, W., & Wang, X. (2014). Comparison of the adult strabismus quality of life questionnaire (AS-20) with the amblyopia and strabismus questionnaire (ASQE) among adults with strabismus who seek medical care in China. BMC Ophthalmology, 14(1), 110. DOI: 10.1186/1471-2415-14-139
  75. 75Webber, A. L., Wood, J. M., Gole, G. A., & Brown, B. (2008). The effect of amblyopia on fine motor skills in children. Investigative Ophthalmology and Visual Science, 49(2), 594603. DOI: 10.1167/iovs.07-0869
  76. 76WHO. (2019). World report on vision. In World health Organization (Vol. 214, Issue 14). DOI: 10.1016/j.vaccine.2018.04.022
  77. 77Wu, B., He, Z. J., & Ooi, T. L. (2007). Inaccurate representation of the ground surface beyond a texture boundary. Perception, 36(5), 703721. DOI: 10.1068/p5693
  78. 78Wu, B., Ooi, T. L., & He, Z. (2004). Perceiving distance accurately by a directional process of integrating ground information. Nature, 428(4), 7377. DOI: 10.1038/nature02350
  79. 79Wu, J., He, Z. J., & Ooi, T. L. (2005). Visually perceived eye level and horizontal midline of the body trunk influenced by optic flow. Perception, 34(9), 10451060. DOI: 10.1068/p5416
  80. 80Zhou, J., Li, L., Zhang, P., Xi, J., Zhou, Y., Lu, Z. L., & Huang, C. B. (2015). Tilt after-effect from high spatial-frequency patterns in the amblyopic eye of adults with anisometropic amblyopia. Scientific Reports, 5(March). DOI: 10.1038/srep08728
  81. 81Zhou, L., Deng, C., Ooi, T. L., & He, Z. J. (2017). Attention modulates perception of visual space. Nature Human Behaviour, 1(1), 15. DOI: 10.1038/s41562-016-0004
  82. 82Zhou, L., He, Z. J., & Ooi, T. L. (2013). The visual system’s intrinsic bias and knowledge of size mediate perceived size and location in the dark. Journal of Experimental Psychology: Learning Memory and Cognition, 39(6), 19301942. DOI: 10.1037/a0033088
  83. 83Zhou, L., Ooi, T. L., & He, Z. J. (2016). Intrinsic spatial knowledge about terrestrial ecology favors the tall for judging distance. Science Advances, 2(8). DOI: 10.1126/sciadv.1501070
DOI: https://doi.org/10.5334/pb.1038 | Journal eISSN: 0033-2879
Language: English
Submitted on: Oct 19, 2020
Accepted on: May 19, 2021
Published on: Jun 21, 2021
Published by: Ubiquity Press
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2021 Bo Dong, Airui Chen, Tianyang Zhang, Ming Zhang, published by Ubiquity Press
This work is licensed under the Creative Commons Attribution 4.0 License.