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形态暗示运动表明运动有助于弱视患者对整体形态的感知。

Implied Motion From Form Shows Motion Aids the Perception of Global Form in Amblyopia.

机构信息

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出版信息

Invest Ophthalmol Vis Sci. 2020 May 11;61(5):58. doi: 10.1167/iovs.61.5.58.

Abstract

PURPOSE

Global motion and global form perception have been found to be abnormal in the presence of amblyopia. How such deficits manifest in visual function reliant on the interactions between these two visual processing mechanisms has not been adequately explored. In the current study, we use dynamic Glass patterns (dGlass) to measure implied motion thresholds in variable external noise to investigate the local and global limitations of processing.

METHODS

A total of 13 amblyopes (eight strabismic and five anisometropic, mean interocular visual acuity difference 0.30 ± 0.12 logMAR) and six visually normal controls discriminated the overall implied motion of dGlass generated by presenting nine independent sets of static Glass patterns over 0.5 seconds. The orientation of dipole elements was derived from the Gaussian distribution with prescribed mean and standard deviation that served as external noise. Thresholds at varying external noise were fitted to a set of linear amplifier models that were statistically compared to investigate the contribution of local and global processing parameters.

RESULTS

The implied motion thresholds were higher for strabismic (4.33° ± 1.34°) compared to anisometropic (2.32° ± 0.76°) amblyopia and controls (2.28° ± 0.50°) in the no-noise condition. The multivariate ANOVA analysis showed no difference between amblyopic and control observers at the no-noise and high-noise levels (P > 0.1). The statistical comparison of nested models showed normal internal noise and sampling efficiency parameters for both strabismic and anisometropic amblyopia (PS >0.50).

CONCLUSIONS

The normal thresholds for implied motion in this study would suggest that motion aids the perception of global form cues present in dynamic Glass patterns. Our results challenge the proposed dorsal stream vulnerability in developmental disorders such as amblyopia.

摘要

目的

在弱视存在的情况下,已发现全局运动和全局形状感知异常。这些缺陷在视觉功能中如何表现,这些视觉处理机制之间的相互作用尚未得到充分探索。在本研究中,我们使用动态 Glass 图案(dGlass)来测量在可变外部噪声下的隐含运动阈值,以研究处理的局部和全局限制。

方法

共有 13 名弱视患者(8 名斜视性和 5 名屈光参差性,平均双眼视觉敏锐度差异为 0.30 ± 0.12 logMAR)和 6 名视力正常的对照组者通过在 0.5 秒内呈现九组独立的静态 Glass 图案来区分 dGlass 产生的整体隐含运动。偶极子元素的方向是从具有规定均值和标准差的高斯分布中得出的,这些均值和标准差作为外部噪声。在不同的外部噪声下,将阈值拟合到一组线性放大器模型中,并进行统计比较,以研究局部和全局处理参数的贡献。

结果

在无噪声条件下,斜视性弱视(4.33°±1.34°)的隐含运动阈值高于屈光参差性弱视(2.32°±0.76°)和对照组(2.28°±0.50°)。多变量方差分析显示,在无噪声和高噪声水平下,弱视患者和对照组之间没有差异(P>0.1)。嵌套模型的统计比较表明,斜视性和屈光参差性弱视的内部噪声和采样效率参数均正常(PS>0.50)。

结论

本研究中隐含运动的正常阈值表明,运动有助于感知动态 Glass 图案中存在的全局形状提示。我们的结果挑战了发育障碍(如弱视)中背侧流易损性的假说。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8de7/7405683/36239b70a8f3/iovs-61-5-58-f001.jpg

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