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空间偏移、时间偏移和图像速度对人类弱视中全局运动敏感性的影响。

The effects of spatial offset, temporal offset and image speed on sensitivity to global motion in human amblyopia.

作者信息

Knox P J, Ledgeway T, Simmers A J

机构信息

Visual Neuroscience Research Group, Vision Sciences, School of Life Sciences, Glasgow Caledonian University, United Kingdom.

出版信息

Vision Res. 2013 Jun 28;86:59-65. doi: 10.1016/j.visres.2013.04.003. Epub 2013 Apr 27.

Abstract

The presence of a general global motion processing deficit in amblyopia is now well established, although its severity may depend on image speed and amblyopia type, but its underlying cause(s) is still largely indeterminate. To address this issue and to characterize further the nature of the global motion perception deficit in human amblyopia, the effects of varying spatial offset (jump size-Δs) and temporal offset (delay between positional updates-Δt) in discriminating global motion for a range of speeds (1.5, 3 and 9°/s) in both amblyopic and normal vision were evaluated. For normal adult observers (NE) and the non-amblyopic eye (FE) motion coherence thresholds measured when Δt was varied were significantly higher than those when Δs was varied. Furthermore when Δt was varied, thresholds rose significantly as the speed of image motion decreased for both NEs and FEs. AE thresholds were higher overall than the other eyes and appeared independent of both the method used to create movement and speed. These results suggest that the spatial and temporal limits underlying the perception of global motion are different. In addition degrading the smoothness of motion has comparatively little effect on the motion mechanisms driven by the AE, suggesting that the internal noise associated with encoding motion direction is relatively high.

摘要

弱视患者普遍存在整体全局运动处理缺陷,这一点现已得到充分证实,尽管其严重程度可能取决于图像速度和弱视类型,但其根本原因在很大程度上仍不明确。为了解决这个问题并进一步明确人类弱视中全局运动感知缺陷的本质,我们评估了在一系列速度(1.5、3和9°/秒)下,弱视眼和正常视力眼中,不同空间偏移(跳跃大小 - Δs)和时间偏移(位置更新之间的延迟 - Δt)对辨别全局运动的影响。对于正常成年观察者(NE)和非弱视眼(FE),当Δt变化时测量的运动一致性阈值显著高于Δs变化时的阈值。此外,当Δt变化时,对于NE和FE,随着图像运动速度降低,阈值显著上升。弱视眼(AE)的阈值总体上高于其他眼睛,并且似乎与用于产生运动的方法和速度无关。这些结果表明,全局运动感知的空间和时间限制是不同的。此外,降低运动的平滑度对由AE驱动的运动机制影响相对较小,这表明与编码运动方向相关的内部噪声相对较高。

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