对恐惧面孔的处理表现出皮层下功能的特征。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-05-01 DOI:10.1037/xge0001568
Kairui Yu, Junzhen Guo, Zhenjie Xu, Feiyang Shi, Xiaoqian Yu, Fang Fang, Yingying Wang
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引用次数: 0

摘要

人们认为皮层下通路是为了促进恐惧信息的传递而进化出来的,但在人类身上却缺乏其存在的直接证据。近年来,快速、前注意和前意识的恐惧处理已被证实,通过质疑典型皮层通路在恐惧处理中的必要性,为皮层下通路的存在提供了间接支持。然而,直接支持还需要皮层下区域参与恐惧处理的证据。为了解决这个问题,我们在此研究恐惧处理是否反映了假设的皮层下通路中皮层下结构的特征。实验1采用单眼/双目范式,结果表明恐惧脸部处理具有同眼优势,而中性脸部处理不具有同眼优势,这表明恐惧处理主要依赖于皮层下的单眼神经元。实验 2 和 3 进一步显示了恐惧处理过程中对短波长刺激的不敏感性和鼻颞半球的不对称性,而这两者都是上丘的功能特征,上丘是皮层下通路的关键枢纽。此外,所有三项实验都揭示了恐惧处理的低空间频率选择性,这与通过皮层下神经元的磁细胞输入是一致的。这些结果表明,皮层下结构有选择性地参与了恐惧处理,再加上自动恐惧处理的间接证据,为人类恐惧处理的皮层下通路的存在提供了一个更完整的图景。(PsycInfo Database Record (c) 2024 APA, 版权所有)。
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Processing of fearful faces exhibits characteristics of subcortical functions.

A subcortical pathway is thought to have evolved to facilitate fear information transmission, but direct evidence for its existence in humans is lacking. In recent years, rapid, preattentive, and preconscious fear processing has been demonstrated, providing indirect support for the existence of the subcortical pathway by challenging the necessity of canonical cortical pathways in fear processing. However, direct support also requires evidence for the involvement of subcortical regions in fear processing. To address this issue, here we investigate whether fear processing reflects the characteristics of the subcortical structures in the hypothesized subcortical pathway. Using a monocular/dichoptic paradigm, Experiment 1 demonstrated a same-eye advantage for fearful but not neutral face processing, suggesting that fear processing relied on monocular neurons existing mainly in the subcortex. Experiments 2 and 3 further showed insensitivity to short-wavelength stimuli and a nasal-temporal hemifield asymmetry in fear processing, both of which were functional characteristics of the superior colliculus, a key hub of the subcortical pathway. Furthermore, all three experiments revealed a low spatial frequency selectivity of fear processing, consistent with magnocellular input via subcortical neurons. These results suggest a selective involvement of subcortical structures in fear processing, which, together with the indirect evidence for automatic fear processing, provides a more complete picture of the existence of a subcortical pathway for fear processing in humans. (PsycInfo Database Record (c) 2024 APA, all rights reserved).

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7.20
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4.30%
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567
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