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单眼运动感知中周边抑制减弱。

Reduced surround suppression in monocular motion perception.

作者信息

Arranz-Paraíso Sandra, Read Jenny C A, Serrano-Pedraza Ignacio

机构信息

Faculty of Psychology, Universidad Complutense de Madrid, Madrid, Spain.

Biosciences Institute, Newcastle University, Newcastle upon Tyne, UK.

出版信息

J Vis. 2021 Jan 4;21(1):10. doi: 10.1167/jov.21.1.10.

Abstract

Motion discrimination of large stimuli is impaired at high contrast and short durations. This psychophysical result has been linked with the center-surround suppression found in neurons of area MT. Recent physiology results have shown that most frontoparallel MT cells respond more strongly to binocular than to monocular stimulation. Here we measured the surround suppression strength under binocular and monocular viewing. Thirty-nine participants took part in two experiments: (a) where the nonstimulated eye viewed a blank field of the same luminance (n = 8) and (b) where it was occluded with a patch (n = 31). In both experiments, we measured duration thresholds for small (1 deg diameter) and large (7 deg) drifting gratings of 1 cpd with 85% contrast. For each subject, a Motion Suppression Index (MSI) was computed by subtracting the duration thresholds in logarithmic units of the large minus the small stimulus. Results were similar in both experiments. Combining the MSI of both experiments, we found that the strength of suppression for binocular condition (MSIbinocular = 0.249 ± 0.126 log10 (ms)) is 1.79 times higher than under monocular viewing (MSImonocular = 0.139 ± 0.137 log10 (ms)). This increase is too high to be explained by the higher perceived contrast of binocular stimuli and offers a new way of testing whether MT neurons account for surround suppression. Potentially, differences in surround suppression reported in clinical populations may reflect altered binocular processing.

摘要

在高对比度和短持续时间条件下,大刺激的运动辨别能力会受损。这一心理物理学结果与MT区神经元中发现的中心-外周抑制有关。最近的生理学研究结果表明,大多数额状面MT细胞对双眼刺激的反应比对单眼刺激的反应更强。在此,我们测量了双眼和单眼观察条件下的外周抑制强度。39名参与者参与了两项实验:(a)非刺激眼观看相同亮度的空白视野(n = 8);(b)非刺激眼被眼罩遮住(n = 31)。在两项实验中,我们测量了对比度为85%、空间频率为1周/度的小(直径1度)和大(直径7度)漂移光栅的持续时间阈值。对于每个受试者,通过用大刺激的对数单位持续时间阈值减去小刺激的对数单位持续时间阈值来计算运动抑制指数(MSI)。两项实验的结果相似。综合两项实验的MSI,我们发现双眼条件下的抑制强度(MSI双眼 = 0.249 ± 0.126 log10(毫秒))比单眼观察时(MSI单眼 = 0.139 ± 0.137 log10(毫秒))高1.79倍。这种增加过高,无法用双眼刺激更高的感知对比度来解释,这为测试MT神经元是否参与外周抑制提供了一种新方法。临床上报道的外周抑制差异可能潜在地反映了双眼加工的改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7b5/7814361/e71201729823/jovi-21-1-10-f001.jpg

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