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Simultaneous EEG-fMRI Study Reveals Separate Bias Mechanisms Modulated by Stimulus Evidence During Rapid Face Processing

机译:同时EEG-FMRI研究揭示了在快速面处理期间通过刺激证据调节的单独偏置机制

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Perceptual choice is affected not only by the stimulus evidence present in the decision alternatives, but also by the propensity to choose one alternative over another. In the drift-diffusion model (DDM), such bias can be expressed either as a change in drift rate or a change in starting point of the decision process. Here, we collected simultaneous EEG and fMRI data while human subjects were performing a three-choice (Face vs. Car vs. House) visual categorization task. We spatially and temporally dissociated the neural correlates underlying the face decision bias as a function of stimulus evidence. Firstly, by fitting the DDM, we quantitatively showed that the change in drift rate best accounted for the decision bias towards faces when sensory evidence was abundant, whereas the shift in starting point best explained the bias effect when inadequate sensory evidence was present. Secondly, we used the EEG single-trial variability to temporally identify brain regions modulated by the two sets of subject-wise bias parameters in the fMRI analysis. Imaging results showed a double dissociation of the bias effects in space and in time as the level of sensory evidence changed: bias in drift rate correlated only with an early sensory network while bias in starting point activated a distributed late decision-related network.
机译:感知的选择不仅受到决定替代方案中存在的刺激证据,而且通过倾向于选择一个替代方面的刺激证据。在漂移扩散模型(DDM)中,这种偏置可以表示为漂移速率的变化或决策过程的起点的变化。在这里,我们收集了同时eEG和FMRI数据,而人类受试者正在进行三种选择(面部与汽车与汽车与房屋)视觉分类任务。随着刺激证据的函数,我们在空间和时间下解开了面部决定偏差的神经相关性。首先,通过拟合DDM,我们定量地表明,当感官证据丰富时,漂移率的变化最能占朝向面部的决定偏差,而起点的转变最佳地解释了当存在不充分的感官证据时偏差效应。其次,我们使用了EEG单试的变化来暂时识别由FMRI分析中的两组主题偏置参数调制的脑区域。成像结果表明,随着感官证据的水平改变的偏差效应,随着感官证据的水平变化:漂移率的偏差仅与早期感官网络相关,而起始点的偏置激活了分布式后期决策相关网络。

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