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An fMRI investigation of preparatory set in the human cerebral cortex and superior colliculus for pro- and anti-saccades

机译:对人大脑皮层和上丘的准备区进行功能磁共振成像检查,以进行前扫视和反扫视

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摘要

Previous studies have identified several cortical regions that show larger BOLD responses during preparation and execution of anti-saccades than pro-saccades. We confirmed this finding with a greater BOLD response for anti-saccades than pro-saccades during the preparation phase in the FEF, IPS and DLPFC and in the FEF and IPS in the execution phase. We then applied multi-voxel pattern analysis (MVPA) to establish whether different neural populations are involved in the two types of saccade. Pro-saccades and anti-saccades were reliably decoded during saccade execution in all three cortical regions (FEF, DLPFC and IPS) and in IPS during saccade preparation. This indicates neural specialization, for programming the desired response depending on the task rule, in these regions. In a further study tailored for imaging the superior colliculus in the midbrain a similar magnitude BOLD response was observed for pro-saccades and anti-saccades and the two saccade types could not be decoded with MVPA. This was the case both for activity related to the preparation phase and also for that elicited during the execution phase. We conclude that separate cortical neural populations are involved in the task-specific programming of a saccade while in contrast, the SC has a role in response preparation but may be less involved in high-level, task-specific aspects of the control of saccades.
机译:先前的研究已经确定了几个皮层区域,这些区域在准备和执行反扫视过程中显示出比前扫视更大的BOLD反应。我们在FEF,IPS和DLPFC的准备阶段以及执行​​阶段的FEF和IPS的准备阶段中,对防扫视的响应比对扫视的响应更大,从而证实了这一发现。然后,我们应用多体素模式分析(MVPA)来确定两种类型的扫视是否涉及不同的神经群体。前扫视和反扫视在三个皮质区域(FEF,DLPFC和IPS)执行扫视时以及在扫视准备期间均在IPS中可靠地解码。这表明在这些区域中存在神经专长,用于根据任务规则对所需的响应进行编程。在专门为中脑上丘成像成像的进一步研究中,对于前扫视和反扫视观察到了类似的BOLD响应,并且两种扫视类型无法用MVPA解码。与准备阶段有关的活动以及在执行阶段所引发的活动都是如此。我们得出的结论是,单独的皮质神经种群参与扫视的任务特定编程,而与此相反,SC在响应准备中发挥作用,但可能较少参与扫视控制的高级,特定任务方面。

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