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在中央凹尺度上,由微调的外源性注意力驱动的频率选择性对比敏感度调制。

Frequency-selective contrast sensitivity modulation driven by fine-tuned exogenous attention at the foveal scale.

作者信息

Guzhang Yue, Jaeger T Florian, Poletti Martina

机构信息

Department of Brain and Cognitive Sciences, University of Rochester, Rochester, NY, United States.

Goergen Institute for Data Science and Artificial Intelligence, University of Rochester, Rochester, NY, United States.

出版信息

bioRxiv. 2025 Sep 1:2025.08.27.672541. doi: 10.1101/2025.08.27.672541.

Abstract

Exogenous attention is a rapid, involuntary mechanism that automatically reallocates processing resources toward salient stimuli. It enhances visual sensitivity in the vicinity of the salient stimulus, both in extrafoveal regions and within the high-acuity foveola. While the spatial frequencies modulated by exogenous attention in extrafoveal vision are well characterized, it remains unknown how this mechanism operates within the foveola, which can resolve spatial frequencies up to 30 cycles per degree (CPD). Here, we examined which spatial frequencies were enhanced by fine-grained deployments of exogenous attention within this highest-acuity region of the visual field. Using high-precision eye-tracking and gaze-contingent display control to precisely localize gaze during attentional allocation, we found that exogenous attention at the foveal scale selectively enhances contrast sensitivity for low- to mid-range spatial frequencies (4-8 CPD), with no significant benefits for higher spatial frequencies (12-20 CPD). In contrast, attention-related benefits on asymptotic performance at the highest contrast were observed across a wide range of spatial frequencies. These results indicate that, despite the high-resolution capacity of the foveola, exogenous attention remains an inflexible mechanism that, even at this scale, selectively enhances contrast gain for lower spatial frequencies-mirroring its behavior in extrafoveal vision.

摘要

外源性注意是一种快速的、非自主的机制,它会自动将处理资源重新分配到显著刺激上。它会提高显著刺激附近区域的视觉敏感度,包括中央凹以外的区域以及高敏锐度的中央小凹内。虽然在外周视觉中由外源性注意调制的空间频率已得到充分表征,但尚不清楚这种机制在中央小凹内是如何运作的,中央小凹能够分辨高达每度30周(CPD)的空间频率。在这里,我们研究了在视野的这个最高敏锐度区域内,外源性注意的精细部署会增强哪些空间频率。通过使用高精度眼动追踪和注视相关显示控制,在注意力分配过程中精确地定位注视,我们发现中央凹尺度下的外源性注意选择性地增强了低至中频空间频率(4 - 8 CPD)的对比敏感度,而对较高空间频率(12 - 20 CPD)没有显著益处。相比之下,在广泛的空间频率范围内,都观察到了注意力对最高对比度下渐近性能的有益影响。这些结果表明,尽管中央小凹具有高分辨率能力,但外源性注意仍然是一种不灵活的机制,即使在这个尺度下,它也会选择性地增强较低空间频率的对比增益——这与它在外周视觉中的行为一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1900/12424650/3719f30cfdc9/nihpp-2025.08.27.672541v1-f0001.jpg

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