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Attending to global versus local stimulus features modulates neural processing of low versus high spatial frequencies: an analysis with event-related brain potentials

机译:参加全局刺激与局部刺激功能可调节低空间频率与高空间频率的神经处理:与事件相关的脑电势的分析

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摘要

Spatial frequency (SF) selection has long been recognized to play a role in global and local processing, though the nature of the relationship between SF processing and global/local perception is debated. Previous studies have shown that attention to relatively lower SFs facilitates global perception, and that attention to relatively higher SFs facilitates local perception. Here we recorded event-related brain potentials (ERPs) to investigate whether processing of low versus high SFs is modulated automatically during global and local perception, and to examine the time course of any such effects. Participants compared bilaterally presented hierarchical letter stimuli and attended to either the global or local levels. Irrelevant SF grating probes flashed at the center of the display 200 ms after the onset of the hierarchical letter stimuli could either be low or high in SF. It was found that ERPs elicited by the SF grating probes differed as a function of attended level (global versus local). ERPs elicited by low SF grating probes were more positive in the interval 196–236 ms during global than local attention, and this difference was greater over the right occipital scalp. In contrast, ERPs elicited by the high SF gratings were more positive in the interval 250–290 ms during local than global attention, and this difference was bilaterally distributed over the occipital scalp. These results indicate that directing attention to global versus local levels of a hierarchical display facilitates automatic perceptual processing of low versus high SFs, respectively, and this facilitation is not limited to the locations occupied by the hierarchical display. The relatively long latency of these attention-related ERP modulations suggests that initial (early) SF processing is not affected by attention to hierarchical level, lending support to theories positing a higher level mechanism to underlie the relationship between SF processing and global versus local perception.
机译:长期以来,人们一直认为空间频率(SF)选择在全局和局部处理中发挥作用,尽管对SF处理与全局/局部感知之间关系的性质进行了辩论。先前的研究表明,关注相对较低的SF有助于整体感知,而关注相对较高的SF则有助于局部感知。在这里,我们记录了与事件相关的脑电势(ERP),以调查低和高SF的处理是否在全局和局部感知过程中自动调节,并检查任何此类影响的时程。与会者比较了双边提出的等级字母刺激,并参加了全球或地方各级。分层字母刺激开始后200毫秒,无关的SF光栅探头在显示屏中央闪烁,可能是SF偏低还是偏高。已发现,SF光栅探针引发的ERPs随照管水平(全局与局部)而变化。低SF光栅探针引发的ERPs在196-236 ms的时间间隔内比局部注意更积极,并且这种差异在右枕骨头皮上更大。相比之下,由高SF光栅引起的ERPs在局部注意力集中的250-290 ms期间要比全球关注的更为积极,并且这种差异在枕骨头皮上是双向分布的。这些结果表明,将注意力集中在分层显示的全局级别与局部级别上,分别有利于低SF与高SF的自动感知处理,并且这种促进并不局限于分层显示所占据的位置。这些与注意力有关的ERP调制的相对较长的等待时间表明,初始(早期)SF处理不受层次结构注意的影响,这为理论奠定了基础,为建立SF处理与全局感知与局部感知之间的关系奠定了基础。

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