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内斜视中一致的眼球运动和运动视差不对称性。

Concordant eye movement and motion parallax asymmetries in esotropia.

作者信息

Nawrot Mark, Frankl Megan, Joyce Lindsey

机构信息

Center for Visual Neuroscience, Department of Psychology, North Dakota State University, 1210 Albrecht Boulevard, Fargo, ND 58105, USA.

出版信息

Vision Res. 2008 Mar;48(6):799-808. doi: 10.1016/j.visres.2007.12.010. Epub 2008 Feb 6.

Abstract

The role of eye movements in the perception of depth from motion was investigated in esotropia. Elevated motion parallax thresholds have been shown in strabismus [Thompson, A. M., & Nawrot, M. (1999). Abnormal depth perception from motion parallax in amblyopic observers. Vision Research, 39, 1407-1413] suggesting a global deficit in depth perception involving both stereopsis and motion. However, this motion parallax deficit in strabismus might be better explained by the role that eye movements play in motion parallax [Nawrot, M., & Joyce, L. (2006). The pursuit theory of motion parallax. Vision Research, 46, 4709-4725]. Esotropia is associated with asymmetric pursuit and optokinetic response eye movements [Demer, J. L., & von Noorden, G. K. (1988). Optokinetic asymmetry in esotropia. Journal of Pediatric Ophthalmology and Strabismus, 25, 286-292; Schor, C. M., & Levi, D. M. (1980). Disturbances of small-field horizontal and vertical optokinetic nystagmus in amblyopia. Investigative Ophthalmology and Visual Science, 19, 851-864; Tychsen, L., & Lisberger, S. G. (1986). Maldevelopment of visual motion processing in humans who had strabismus with onset in infancy. The Journal of Neuroscience, 6, 2495-2508; [Westall, C. A., Eizenman, M., Kraft, S. P., Panton, C. M., Chatterjee, S., & Sigesmund, D. (1998). Cortical binocularity and monocular optokinetic asymmetry in early-onset esotropia. Investigative Ophthalmology and Visual Science, 39, 1352-1360.]. The first experiment demonstrates that the motion parallax deficit in esotropia mirrors the pursuit eye movement asymmetry: in the direction of normal pursuit, esotropic observers had normal depth from motion parallax. A second set of experiments, conducted in normal observers, demonstrates that this motion parallax deficit is not a secondary problem due to the retinal slip created by inadequate pursuit. These results underscore the role of pursuit eye movements in the perception of depth from motion parallax.

摘要

研究了内斜视患者中眼球运动在运动深度感知中的作用。斜视患者已被证明存在较高的运动视差阈值[汤普森,A.M.,& 纳罗特,M.(1999年)。弱视观察者运动视差导致的深度感知异常。《视觉研究》,39,1407 - 1413],这表明在涉及立体视觉和运动的深度感知方面存在整体缺陷。然而,斜视中这种运动视差缺陷可能更好地由眼球运动在运动视差中所起的作用来解释[纳罗特,M.,& 乔伊斯,L.(2006年)。运动视差的追踪理论。《视觉研究》,46,4709 - 4725]。内斜视与不对称的追踪和视动反应眼球运动有关[德默,J.L.,& 冯·诺登,G.K.(1988年)。内斜视中的视动不对称。《小儿眼科与斜视杂志》,25,286 - 292;肖尔,C.M.,& 利维,D.M.(1980年)。弱视中小视野水平和垂直视动性眼球震颤的干扰。《眼科研究与视觉科学》,19,851 - 864;泰克森,L.,& 利斯伯格,S.G.(1986年)。婴儿期起病的斜视患者视觉运动处理的发育异常。《神经科学杂志》,6,2495 - 2508;[韦斯托尔,C.A.,艾森曼,M.,克拉夫特,S.P.,潘顿,C.M.,查特吉,S.,& 西格斯蒙德,D.(1998年)。早发性内斜视的皮质双眼性和单眼视动不对称。《眼科研究与视觉科学》,39,1352 - 1360]。第一个实验表明,内斜视中的运动视差缺陷反映了追踪眼球运动的不对称性:在正常追踪方向上,内斜视观察者通过运动视差有正常的深度感知。在正常观察者中进行的第二组实验表明,这种运动视差缺陷不是由于追踪不足产生的视网膜滑动导致的次要问题。这些结果强调了追踪眼球运动在通过运动视差感知深度中的作用。

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本文引用的文献

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Optokinetic asynunetry in esotropia.内斜视中的视动性不对称
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The pursuit theory of motion parallax.运动视差的追踪理论。
Vision Res. 2006 Dec;46(28):4709-25. doi: 10.1016/j.visres.2006.07.006. Epub 2006 Nov 2.
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Perceiving depth order during pursuit eye movement.在追踪眼球运动过程中感知深度顺序。
Vision Res. 2004 Dec;44(26):3025-34. doi: 10.1016/j.visres.2004.07.007.
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SEQUENTIAL ESTIMATION OF POINTS ON A PSYCHOMETRIC FUNCTION.心理测量函数上各点的序贯估计
Br J Math Stat Psychol. 1965 May;18:1-10. doi: 10.1111/j.2044-8317.1965.tb00689.x.
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Development of gaze tracking of small and large objects.大小物体注视追踪的发展
Exp Brain Res. 2002 Sep;146(2):257-64. doi: 10.1007/s00221-002-1161-2. Epub 2002 Jun 26.

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