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弱视中的二阶视流缺陷。

Second-order optic flow deficits in amblyopia.

作者信息

Aaen-Stockdale Craig, Ledgeway Timothy, Hess Robert F

机构信息

McGill Vision Research, Department of Ophthalmology, McGill University, Montreal, Quebec, Canada.

出版信息

Invest Ophthalmol Vis Sci. 2007 Dec;48(12):5532-8. doi: 10.1167/iovs.07-0447.

DOI:10.1167/iovs.07-0447
PMID:18055802
Abstract

PURPOSE

Amblyopic observers show deficits for global motion discrimination that cannot be accounted for by their contrast sensitivity impairment. The processing of first- and second-order translational global motion is deficient, as is the processing of first-order optic flow, suggesting that cortical function in extrastriate areas is impaired. The authors sought to determine whether amblyopes show impairment in the processing of optic flow defined by second-order motion, whether these deficits are comparable in the two eyes, and whether these deficits are correlated with first-order deficits.

METHODS

Eight amblyopic subjects (three strabismic, three strabismic-anisometropic, one anisometropic, one deprivation; mean age, 29 years) were tested. The authors used random dot kinematograms in which the dots were luminance or contrast modulations of background noise. The global pattern of dot motion within the stimulus area was translational, radial, or rotational. Coherence thresholds for direction discrimination were obtained across a range of dot modulation depths, allowing the separation of contrast and motion deficits.

RESULTS

The present study showed that deficits in second-order optic flow processing were equivalent to those for first-order stimuli and that these were unrelated to the extent of the amblyopic contrast sensitivity deficit and were comparable in both eyes. Radial optic flow was more affected than rotational optic flow.

CONCLUSIONS

Global motion impairment appeared to have a high-level binocular locus and was independent of the depth of the contrast deficit. Results also support the idea that global motion and optic flow processing are form-cue invariant.

摘要

目的

弱视观察者在全局运动辨别方面存在缺陷,这无法用其对比敏感度损伤来解释。一阶和二阶平移全局运动的处理存在缺陷,一阶光流的处理也是如此,这表明纹外区域的皮质功能受损。作者试图确定弱视者在二阶运动定义的光流处理方面是否存在损伤,这些缺陷在双眼是否具有可比性,以及这些缺陷是否与一阶缺陷相关。

方法

测试了8名弱视受试者(3名斜视性、3名斜视性屈光参差性、1名屈光参差性、1名剥夺性;平均年龄29岁)。作者使用了随机点运动图,其中的点是背景噪声的亮度或对比度调制。刺激区域内点运动的全局模式为平移、径向或旋转。在一系列点调制深度范围内获得方向辨别相干阈值,从而区分对比度和运动缺陷。

结果

本研究表明,二阶光流处理的缺陷与一阶刺激的缺陷相当,且这些缺陷与弱视对比敏感度缺陷的程度无关,在双眼具有可比性。径向光流比旋转光流受影响更大。

结论

全局运动损伤似乎具有高级别的双眼位点,且与对比缺陷的深度无关。结果还支持全局运动和光流处理是形式线索不变的这一观点。

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