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Functional interactions between oculomotor regions during prosaccades and antisaccades.

机译:动眼过程和反眼过程中动眼区域之间的功能相互作用。

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摘要

Human behavior reflects a continual negotiation of automatic and directed actions. The oculomotor network is a well-characterized neural system in which to study this balance of behavioral control. For instance, saccades made toward and away from a flashed visual stimulus (prosaccades and antisaccades, respectively) are known to engage different cognitive processes. Brain regions important for such controlled execution include the presupplementary motor area (pre-SMA), frontal eye fields (FEF), and intraparietal sulcus (IPS). Recent work has emphasized various elements of this network but has not explored the functional interactions among regions. We used event-related fMRI to image human brain activity during performance of an interleaved pro/antisaccade task. Since traditional univariate statistics cannot address issues of functional connectivity, a multivariate technique is necessary. Coherence between fMRI time series of the pre-SMA with the FEF and IPS was used to measure functional interactions. The FEF, but not IPS, showed significant differential coherence between pro- and antisaccade trials with pre-SMA. These results suggest that the pre-SMA coordinates with FEF to maintain a controlled, preparatory set for task-appropriate oculomotor execution.
机译:人类行为反映了对自动和定向动作的持续协商。动眼神经网络是一个功能强大的神经系统,可在其中研究行为控制的这种平衡。例如,已知朝着和远离闪光视觉刺激的扫视(分别为扫视和反扫视)会参与不同的认知过程。对于这种受控执行而言重要的大脑区域包括补充运动区(pre-SMA),额眼视野(FEF)和顶壁沟(IPS)。最近的工作强调了该网络的各个要素,但没有探讨区域之间的功能相互作用。我们使用事件相关的功能磁共振成像来成像执行交错的pro / antisaccade任务期间的人脑活动。由于传统的单变量统计不能解决功能连通性的问题,因此必须使用多变量技术。前SMA的fMRI时间序列与FEF和IPS之间的相干性用于测量功能相互作用。 FEF(而非IPS)在SMA前的前扫视试验和反扫视试验之间显示出显着的差异一致性。这些结果表明,SMA前期与FEF协调以维持可控制的,适合任务的动眼神经执行的准备集。

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