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扫视预知识的神经网络。

The neural network of saccadic foreknowledge.

作者信息

Bär Sarah, Hauf Martinus, Barton Jason J S, Abegg Mathias

出版信息

Exp Brain Res. 2016 Feb;234(2):409-18. doi: 10.1007/s00221-015-4468-5.

Abstract

Foreknowledge about upcoming events may be exploited to optimize behavioural responses. In a previous work, using an eye movement paradigm, we showed that different types of partial foreknowledge have different effects on saccadic efficiency. In the current study, we investigated the neural circuitry involved in processing of partial foreknowledge using functional magnetic resonance imaging. Fourteen subjects performed a mixed antisaccade, prosaccade paradigm with blocks of no foreknowledge, complete foreknowledge or partial foreknowledge about stimulus location, response direction or task. We found that saccadic foreknowledge is processed primarily within the well-known oculomotor network for saccades and antisaccades. Moreover, we found a consistent decrease in BOLD activity in the primary and secondary visual cortex in all foreknowledge conditions compared to the no-foreknowledge conditions. Furthermore we found that the different types of partial foreknowledge are processed in distinct brain areas: response foreknowledge is processed in the frontal eye field, while stimulus foreknowledge is processed in the frontal and parietal eye field. Task foreknowledge, however, revealed no positive BOLD correlate. Our results show different patterns of engagement in the saccade-related neural network depending upon precisely what type of information is known ahead.

摘要

关于即将发生事件的预知信息可被利用来优化行为反应。在之前的一项研究中,我们使用眼动范式表明,不同类型的部分预知信息对扫视效率有不同影响。在当前研究中,我们使用功能磁共振成像技术研究了参与部分预知信息处理的神经回路。14名受试者执行了一种混合的反扫视、顺扫视范式,其中包括对刺激位置、反应方向或任务没有预知信息、有完整预知信息或有部分预知信息的组块。我们发现,扫视预知信息主要在众所周知的用于扫视和反扫视的眼动网络内进行处理。此外,我们发现,与无预知信息的情况相比,在所有预知信息条件下,初级和次级视觉皮层的血氧水平依赖(BOLD)活动持续下降。此外,我们发现不同类型的部分预知信息在不同的脑区进行处理:反应预知信息在额叶眼区进行处理,而刺激预知信息在额叶和顶叶眼区进行处理。然而,任务预知信息未显示出正向的BOLD相关性。我们的研究结果表明,根据预先知道的确切信息类型,与扫视相关的神经网络会呈现出不同的参与模式。

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