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注意节律对双眼视觉通路敏感。

Attentional Rhythms Are Sensitive to Binocular Visual Pathway.

作者信息

Dong Bo, Zu Guangyao, Zou Ying, Jia Jianrong, Chen Airui, Zhang Ming

机构信息

Department of Psychology, Suzhou University of Science and Technology, Suzhou, China.

Department of Psychology, Soochow University, Suzhou, China.

出版信息

Psych J. 2025 Jun;14(3):317-327. doi: 10.1002/pchj.826. Epub 2025 Jan 8.

Abstract

Visual attention is intrinsically rhythmic and oscillates based on the discrete sampling of either single or multiple objects. Recently, studies have found that the early visual cortex (V1/V2) modulates attentional rhythms. Both monocular and binocular cells are present in the early visual cortex, which acts as a transfer station for transformation of the monocular visual pathway into the binocular visual pathway. However, whether the neural site of attentional rhythms is in the monocular or binocular visual pathway needs further study. In the current study, we leveraged the anatomical features of the monocular and binocular pathway to design a paradigm with same-eye and different-eye presentations of cues and targets. By combining this approach with EEG recordings and analysis the impulse response function (TRF), we aimed to address this question. In Experiment 1, we reset the phase of attentional rhythms in one monocular channel (left eye or right eye) by a dichoptic cue and tracked the impulse response function (TRF) of the monocular channel in the left and right eye separately. We found no significant differences in the respective TRFs and their spectra for each eye, suggesting that attention rarely switched between the two eyes, indicating that the binocular visual pathway, not the monocular visual pathway, is the neural site of attentional rhythms. These results were verified when resetting the phases of attentional rhythms by a binocular cue in Experiment 2. These results suggest that attentional rhythms may be sensitive to activities in the binocular visual pathway.

摘要

视觉注意力本质上是有节奏的,并基于对单个或多个物体的离散采样而振荡。最近,研究发现早期视觉皮层(V1/V2)会调节注意力节奏。单眼和双眼细胞都存在于早期视觉皮层中,早期视觉皮层充当将单眼视觉通路转化为双眼视觉通路的中转站。然而,注意力节奏的神经位点是在单眼视觉通路还是双眼视觉通路中,仍有待进一步研究。在本研究中,我们利用单眼和双眼通路的解剖学特征,设计了一种线索和目标呈现为同眼和异眼的范式。通过将这种方法与脑电图记录以及对脉冲响应函数(TRF)的分析相结合,我们旨在解决这个问题。在实验1中,我们通过双眼分视线索重置了一个单眼通道(左眼或右眼)中的注意力节奏相位,并分别跟踪了左眼和右眼单眼通道的脉冲响应函数(TRF)。我们发现每只眼睛各自的TRF及其频谱没有显著差异,这表明注意力很少在两只眼睛之间切换,这表明双眼视觉通路而非单眼视觉通路是注意力节奏的神经位点。当在实验2中通过双眼线索重置注意力节奏相位时,这些结果得到了验证。这些结果表明,注意力节奏可能对双眼视觉通路中的活动敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6401/12133232/a7d880b1fa18/PCHJ-14-317-g001.jpg

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