Mansouri B, Thompson B, Hess R F
McGill Vision Research, Department of Ophthalmology, McGill University, 687 Pine Ave W (H4-14), Montreal, Que., Canada PQ H3A 1A1.
Vision Res. 2008 Dec;48(28):2775-84. doi: 10.1016/j.visres.2008.09.002. Epub 2008 Nov 1.
It has been established that in amblyopia, information from the amblyopic eye (AME) is not combined with that from the fellow fixing eye (FFE) under conditions of binocular viewing. However, recent evidence suggests that mechanisms that combine information between the eyes are intact in amblyopia. The lack of binocular function is most likely due to the imbalanced inputs from the two eyes under binocular conditions [Baker, D. H., Meese, T. S., Mansouri, B., & Hess, R. F. (2007b). Binocular summation of contrast remains intact in strabismic amblyopia. Investigative Ophthalmology & Visual Science, 48(11), 5332-5338]. We have measured the extent to which the information presented to each eye needs to differ for binocular combination to occur and in doing so we quantify the influence of interocular suppression. We quantify these suppressive effects for suprathreshold processing of global stimuli for both motion and spatial tasks. The results confirm the general importance of these suppressive effects in rendering the structurally binocular visual system of a strabismic amblyope, functionally monocular.
已经确定,在弱视中,双眼视觉条件下来自弱视眼(AME)的信息不会与来自健眼(FFE)的信息整合。然而,最近的证据表明,弱视中双眼间信息整合机制是完好的。双眼功能缺失很可能是由于双眼条件下两眼输入不均衡所致[贝克,D.H.,米斯,T.S.,曼苏里,B.,&赫斯,R.F.(2007b)。斜视性弱视中对比度的双眼总和保持完好。《眼科研究与视觉科学》,48(11),5332 - 5338]。我们测量了双眼整合发生时,呈现给每只眼睛的信息需要有多大差异,以此来量化双眼间抑制的影响。我们对运动和空间任务中全局刺激的阈上处理的这些抑制效应进行了量化。结果证实了这些抑制效应在使斜视性弱视患者结构上的双眼视觉系统在功能上变为单眼方面的普遍重要性。