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Phase noise reveals early category-specific modulation of the event-related potentials

机译:相位噪声揭示了事件相关电位的早期类别特定调制

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摘要

Previous studies have found that the amplitude of the early event-related potential (ERP) components evoked by faces, such as N170 and P2, changes systematically as a function of noise added to the stimuli. This change has been linked to an increased perceptual processing demand and to enhanced difficulty in perceptual decision making about faces. However, to date it has not yet been tested whether noise manipulation affects the neural correlates of decisions about face and non-face stimuli similarly. To this end, we measured the ERPs for faces and cars at three different phase noise levels. Subjects performed the same two-alternative age-discrimination task on stimuli chosen from young–old morphing continua that were created from faces as well as cars and were calibrated to lead to similar performances at each noise-level. Adding phase noise to the stimuli reduced performance and enhanced response latency for the two categories to the same extent. Parallel to that, phase noise reduced the amplitude and prolonged the latency of the face-specific N170 component. The amplitude of the P1 showed category-specific noise dependence: it was enhanced over the right hemisphere for cars and over the left hemisphere for faces as a result of adding phase noise to the stimuli, but remained stable across noise levels for cars over the left and for faces over the right hemisphere. Moreover, noise modulation altered the category-selectivity of the N170, while the P2 ERP component, typically associated with task decision difficulty, was larger for the more noisy stimuli regardless of stimulus category. Our results suggest that the category-specificity of noise-induced modulations of ERP responses starts at around 100 ms post-stimulus.
机译:先前的研究已经发现,诸如N170和P2之类的面孔诱发的早期事件相关电位(ERP)分量的幅度会随着添加到刺激中的噪声而系统地变化。这种变化与增加的感知处理需求以及增加关于面部的感知决策的难度有关。然而,迄今为止,尚未测试噪声操纵是否会类似地影响关于面部和非面部刺激的决策的神经相关性。为此,我们测量了三种不同相位噪声水平下的人脸和汽车的ERP。受试者对从面部和汽车中产生的年轻到旧的变形连续体中选择的刺激物执行相同的两步年龄区分任务,并经过校准以在每个噪声级产生相似的性能。在刺激上添加相位噪声会在相同程度上降低这两种类别的性能并增强响应延迟。与此平行的是,相位噪声会降低振幅并延长特定于脸部的N170组件的等待时间。 P1的振幅显示出特定类别的噪声依赖性:由于在刺激中增加了相位噪声,因此在汽车的右半球和面部的左半球均得到增强,但在左侧的汽车噪声水平上保持稳定以及右半球的脸部。此外,噪声调制改变了N170的类别选择性,而P2 ERP组件通常与任务决策难度相关,对于噪声较大的刺激较大,而与刺激类别无关。我们的结果表明,噪声诱发的ERP反应调制的类别特异性在刺激后约100毫秒开始。

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