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独立成分分析揭示的与注视性眼球运动相关的神经网络。

Neural networks related to pro-saccades and anti-saccades revealed by independent component analysis.

机构信息

Department of Neuroergonomics, Institute of Applied Psychology, Jagiellonian University, Krakow, Poland.

出版信息

Neuroimage. 2012 Sep;62(3):1325-33. doi: 10.1016/j.neuroimage.2012.06.006. Epub 2012 Jun 13.

Abstract

The saccadic eye movement system provides an excellent model for investigating basic cognitive processes and flexible control over behaviour. While the mechanism of pro-saccades (PS) is well known, in the case of the anti-saccade task (AS) it is still not clear which brain regions play a role in the inhibition of reflexive saccade to the target, nor what is the exact mechanism of vector inversion (i.e. orienting in the opposite direction). Independent component analysis (ICA) is one of the methods being used to establish temporally coherent brain regions, i.e. neural networks related to the task. In the present study ICA was applied to fMRI data from PS and AS experiments. The study revealed separate networks responsible for saccade generation into the desired direction, the inhibition of automatic responses, as well as vector inversion. The first function is accomplished by the eye fields network. The inhibition of automatic responses is associated with the executive control network. Vector inversion seems to be accomplished by the network comprising a large set of areas, including intraparietal sulcus, precuneus/posterior cingulate cortices, retrosplenial and parahippocampal. Those regions are associated with the parieto-medial temporal pathway, so far linked only to navigation. These results provide a new insight into understanding of the processes of the inhibition and vector inversion.

摘要

扫视眼动系统为研究基本认知过程和行为的灵活控制提供了一个极好的模型。虽然对注视前眼动(PS)的机制已经很清楚,但在反扫视任务(AS)中,仍不清楚哪些大脑区域在抑制对目标的反射性扫视中起作用,也不清楚向量反转(即向相反方向定向)的确切机制。独立成分分析(ICA)是用于建立与任务相关的时间连贯脑区(即神经网络)的方法之一。本研究将 ICA 应用于 PS 和 AS 实验的 fMRI 数据。研究揭示了负责向期望方向产生扫视、抑制自动反应以及向量反转的独立网络。第一项功能由眼区网络完成。自动反应的抑制与执行控制网络有关。向量反转似乎是由包括顶内沟、后顶叶/后扣带皮质、后扣带回和海马旁回在内的一组广泛区域的网络完成的。这些区域与顶枕颞内侧通路有关,到目前为止,该通路只与导航有关。这些结果为理解抑制和向量反转的过程提供了新的见解。

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