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Simultaneous EEG-fMRI Reveals a Temporal Cascade of Task-Related and Default-Mode Activations During a Simple Target Detection Task

机译:同时脑电图功能磁共振成像显示一个简单的目标检测任务过程中与任务相关和默认模式激活的时间级联。

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摘要

Focused attention continuously and inevitably fluctuates, and to completely understand the mechanisms responsible for these modulations it is necessary to localize the brain regions involved. During a simple visual oddball task, neural responses measured by electroencephalography (EEG) modulate primarily with attention, but source localization of the correlates is a challenge. In this study we use single-trial analysis of simultaneously-acquired scalp EEG and functional magnetic resonance image (fMRI) data to investigate the blood oxygen level dependent (BOLD) correlates of modulations in task-related attention, and we unravel the temporal cascade of these transient activations. We hypothesize that activity in brain regions associated with various task-related cognitive processes modulates with attention, and that their involvements occur transiently in a specific order. We analyze the fMRI BOLD signal by first regressing out the variance linked to observed stimulus and behavioral events. We then correlate the residual variance with the trial-to-trial variation of EEG discriminating components for identical stimuli, estimated at a sequence of times during a trial. Post-stimulus and early in the trial, we find activations in right-lateralized frontal regions and lateral occipital cortex, areas that are often linked to task-dependent processes, such as attentional orienting, and decision certainty. After the behavioral response we see correlates in areas often associated with the default-mode network and introspective processing, including precuneus, angular gyri, and posterior cingulate cortex. Our results demonstrate that during simple tasks both task-dependent and default-mode networks are transiently engaged, with a distinct temporal ordering and millisecond timescale.
机译:注意力的集中不断且不可避免地发生波动,要完全理解造成这些调节的机制,必须对涉及的大脑区域进行定位。在一个简单的视觉怪胎任务中,通过脑电图(EEG)测量的神经反应主要在注意力上进行调节,但是相关物的来源定位是一个挑战。在这项研究中,我们使用对同时获得的头皮脑电图和功能性磁共振图像(fMRI)数据的单次试验分析,以研究与任务相关的注意力中与调制有关的血氧水平(BOLD)相关性,并揭示了时间性级联这些短暂的激活。我们假设大脑中与各种与任务相关的认知过程相关的活动会随着注意力的变化而调节,并且它们的参与以特定顺序暂时发生。我们通过首先回归与观察到的刺激和行为事件相关的方差来分析fMRI BOLD信号。然后,我们将残余方差与相同刺激的脑电图辨别成分的试验间变化相关联,并在试验过程中的某个时间序列上进行估算。刺激后和试验的早期,我们发现右侧分支的额叶区域和枕叶外侧皮质被激活,这些区域通常与任务依赖的过程相关,例如注意定向和决策确定性。行为反应后,我们看到了通常与默认模式网络和内省处理相关的区域之间的相关性,包括前突,角回和后扣带回皮层。我们的结果表明,在简单任务中,与任务相关的网络和默认模式的网络都是短暂参与的,具有明显的时间顺序和毫秒级的时标。

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