首页> 外文期刊>NeuroImage >Single-trial discrimination for integrating simultaneous EEG and fMRI: identifying cortical areas contributing to trial-to-trial variability in the auditory oddball task.
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Single-trial discrimination for integrating simultaneous EEG and fMRI: identifying cortical areas contributing to trial-to-trial variability in the auditory oddball task.

机译:融合同时进行的EEG和fMRI的单项试验鉴别:确定皮质区域,有助于听觉奇异球任务中试验之间的差异。

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The auditory oddball task is a well-studied stimulus paradigm used to investigate the neural correlates of simple target detection. It elicits several classic event-related potentials (ERPs), the most prominent being the P300 which is seen as a neural correlate of subjects' detection of rare (target) stimuli. Though trial-averaging is typically used to identify and characterize such ERPs, their latency and amplitude can vary on a trial-to-trial basis reflecting variability in the underlying neural information processing. Here we simultaneously recorded EEG and fMRI during an auditory oddball task and identified cortical areas correlated with the trial-to-trial variability of task-discriminating EEG components. Unique to our approach is a linear multivariate method for identifying task-discriminating components within specific stimulus- or response-locked time windows. We find fMRI activations indicative of distinct processes that contribute to the single-trial variability during target detection. These regions are different from those found using standard, including trial-averaged, regressors. Of particular note is the strong activation of the lateral occipital complex (LOC). The LOC was not seen when using traditional event-related regressors. Though LOC is typically associated with visual/spatial attention, its activation in an auditory oddball task, where attention can wax and wane from trial to trial, indicates that it may be part of a more general attention network involved in allocating resources for target detection and decision making. Our results show that trial-to-trial variability in EEG components, acquired simultaneously with fMRI, can yield task-relevant BOLD activations that are otherwise unobservable using traditional fMRI analysis.
机译:听觉奇异球任务是一种经过充分研究的刺激范例,用于研究简单目标检测的神经相关性。它引发了几种经典的事件相关电位(ERP),最突出的是P300,P300被视为受试者检测稀有(靶标)刺激物的神经相关因素。尽管通常采用试验平均法来识别和表征此类ERP,但它们的等待时间和幅度可能会在试验间变化,从而反映出基础神经信息处理的可变性。在这里,我们同时在听觉古怪的任务期间记录了脑电图和功能磁共振成像,并确定了与区分任务的脑电图部件的试验间变化相关的皮质区域。我们的方法独特的是一种线性多元方法,用于识别特定刺激或响应锁定时间窗口内的任务区分组件。我们发现功能磁共振成像激活指示不同的过程有助于目标检测过程中的单次试验变异性。这些区域与使用标准发现的区域不同,包括试验平均的回归变量。特别值得注意的是外侧枕骨复合物(LOC)的强烈激活。使用传统的事件相关回归器时,未发现LOC。尽管LOC通常与视觉/空间注意力相关联,但它在听觉怪异任务中的激活可能会导致遍及试验的注意力不断减弱,这表明它可能是更广泛的注意力网络的一部分,该网络涉及为目标检测和检测分配资源。做决定。我们的结果表明,与功能磁共振成像同时采集的脑电图组件的试验间差异可以产生与任务相关的BOLD激活,而使用传统功能磁共振成像分析则无法观察到这种激活。

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