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人类成年人感知野大小的动态变化。

Dynamics of the perceptive field size in human adults.

机构信息

School of Optometry and Vision Sciences, Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan, Israel.

School of Optometry and Vision Sciences, Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan, Israel.

出版信息

Vision Res. 2024 Nov;224:108488. doi: 10.1016/j.visres.2024.108488. Epub 2024 Sep 20.

Abstract

The receptive field (RF) is the fundamental processing unit of human vision; both masking and crowding depend on its size. The RF has a psychophysical corresponding term, the perceptive field (PF); whereas the RF is measured physiologically, the PF is measured psychophysically (a perceptual response). We investigated how spatial (lateral interactions), temporal (the stimulus presentation time), and the procedure affect the PF size for both monocular and binocular viewing. The stimuli consisted of a central vertically oriented Gabor target and high-contrast Gabor flankers positioned in two configurations (orthogonal or collinear) with target-flanker separations of either 2 or 3 wavelengths (λ). We used two main methods to control the monocular and binocular vision: mono-optic glasses vs. stereo glasses. The presentation order was either mixed or non-mixed for the presentation time and the eye condition. We estimated the PF size for both monocular and binocular viewing at 4 different presentation times (40, 80,120, and 200 ms) with different orders of presentation in each experiment (mono-optic glasses vs. stereo glasses, utilizing the lateral masking paradigm). In each experiment we explored one variable: how changing one parameter would affect the PF size in both monocular and binocular viewing (the temporal duration, the testing order of conditions, and the spatial distance) while keeping the others constant. We found that both the monocular and binocular PF size were dynamic and were significantly affected by the presentation order, leading to reduced lateral suppression under the collinear 2λ condition. Hence, both the monocular and binocular PF size depended on the sequence of the stimulus presentation time and the testing order of the conditions. Furthermore, we found that the binocular PF size was significantly larger than the monocular PF size.

摘要

感受野(RF)是人类视觉的基本处理单元;掩蔽和拥挤都依赖于它的大小。RF 有一个心理物理对应术语,即感知野(PF);RF 是通过生理学测量的,而 PF 是通过心理物理学测量的(感知反应)。我们研究了空间(横向相互作用)、时间(刺激呈现时间)和程序如何影响单眼和双眼观看时的 PF 大小。刺激由一个中央垂直取向的 Gabor 目标和高对比度的 Gabor 侧翼组成,侧翼以两种配置(正交或共线)与目标-侧翼分离 2 或 3 个波长(λ)。我们使用两种主要方法来控制单眼和双眼视觉:单光眼镜与立体眼镜。呈现顺序为呈现时间和眼睛状态的混合或非混合。我们使用不同的呈现顺序在每个实验中(单光眼镜与立体眼镜,利用横向掩蔽范式)估计了 4 种不同呈现时间(40、80、120 和 200 毫秒)下的单眼和双眼的 PF 大小。在每个实验中,我们探索了一个变量:改变一个参数如何影响单眼和双眼的 PF 大小(时间持续时间、条件的测试顺序和空间距离),同时保持其他参数不变。我们发现,单眼和双眼的 PF 大小都是动态的,并且受到呈现顺序的显著影响,导致共线 2λ 条件下的横向抑制减少。因此,单眼和双眼的 PF 大小都取决于刺激呈现时间的顺序和条件的测试顺序。此外,我们发现双眼的 PF 大小明显大于单眼的 PF 大小。

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