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Transcranial magnetic stimulation of the left human frontal eye fields eliminates the cost of invalid endogenous cues.

机译:经颅磁刺激左人额眼视野消除了无效内源性提示的成本。

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Humans are able to selectively attend to specific regions of space without moving their eyes. However, there is mounting evidence that these covert shifts of attention may employ many of the same brain regions involved when executing the eye movements. For example, functional magnetic resonance imaging (fMRI) studies show that the oculomotor region known as the frontal eye fields (FEF) are activated by the covert shifts of attention. However, it remains possible that the activations seen in these studies result from actively inhibiting eye movements rather than as a direct result of modulating perceptual processing. Here we provide direct evidence for the role of this region in endogenously driven spatial attention. We show that briefly disrupting the left FEFs with transcranial magnetic stimulation (TMS) eliminated the slow response times associated with the invalid strategic cues when the target appeared in the right visual field. At first glance, our findings appear incompatible with the results reported by Grosbras and Paus (Grosbras, M. -H., & Paus, T. (2002). Transcranial magnetic stimulation of the human frontal eye field: effects on visual perception and attention. Journal of Cognitive Neuroscience, 14(7), 1109-1120) and we suggest this is likely due to the design differences. Specifically, we disrupted the FEF at the time of cue onset, rather than target onset. Taken together with the findings of Grosbras and Paus, our findings suggest that the FEF plays an early role in the inhibition of perceptual information. Furthermore, our findings complement work by Ro et al. (Ro, T., Farne, F., & Chang, E. (2003). Inhibition of return and the frontal eye fields. Experimental Brain Research, 150, 290-296) who report that stimulation of the frontal eye fields disrupts the inhibitory consequences of reflexive attention shifts.
机译:人类能够有选择地注视特定的空间区域而无需动眼。但是,越来越多的证据表明,这些秘密的注意力转移在执行眼球运动时可能会涉及许多相同的大脑区域。例如,功能磁共振成像(fMRI)研究表明,被称为前眼视野(FEF)的动眼区域被注意力的秘密转移所激活。然而,仍然有可能这些研究中发现的激活是由于主动抑制眼球运动而不是调节感知过程的直接结果。在这里,我们提供了该区域在内源性驱动的空间注意力中的作用的直接证据。我们显示,当目标出现在右视野中时,经颅磁刺激(TMS)短暂破坏左FEF消除了与无效策略提示相关的慢响应时间。乍一看,我们的发现似乎与Grosbras和Paus(Grosbras,M.-H.,&Paus,T.(2002)。经颅磁刺激人额眼视野:对视觉感知和注意力的影响)报告的结果不符。 (《认知神经科学杂志》,第14卷第7期,第1109-1120页),我们认为这很可能是由于设计差异所致。具体来说,我们在提示发生时而不是目标开始时中断了FEF。结合Grosbras和Paus的发现,我们的发现表明FEF在抑制知觉信息方面起着早期作用。此外,我们的发现补充了Ro等人的工作。 (Ro,T.,Farne,F.,&Chang,E.(2003)。抑制返回和额叶视野。实验脑研究,150,290-296)报告了对额眼视野的刺激会破坏视力。反身注意力转移的抑制性后果。

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