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The relationship between local and global processing and the processing of high and low spatial frequencies studied by event-related potentials and source modeling.

机译:通过事件相关电位和源模型研究了局部和全局处理与高低空间频率处理之间的关系。

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The processing of global and local elements and of low- and high-spatial frequencies are thought to be interrelated. Evidence for this stems from findings showing that brain localizations for global/local elements and for low/high spatial frequencies seem to overlap. The present study aimed to provide direct evidence that topographical differences between the processing of global and local visual elements can directly be explained by their spatial frequency content, and to study at which point in time this relation is present. This was done by studying the event-related potentials (ERPs) and source models elicited by unfiltered, low- or high-pass filtered hierarchical stimuli. Results showed that performance for global and local targets was affected by removing low and high spatial frequencies, respectively. ERP data indicated that at 250 ms, there was an interaction between the processing of global/local targets and of spatial frequencies because at this time-point removal of low spatial frequencies decreased activity associated with the processing of global targets. When localizing this effect, we found evidence implying that spatial frequency content indeed affected the brain region in which local/global targets were processed. Results implicated that the processing of global information depended on its low spatial frequency content, which was processed more laterally. Instead, processing of local information seemed to depend on its high spatial frequency content, which was processed more medially. Thereby, present results extend former results showing that global and local processing is dependent on spatial frequency and mapped retinotopically in the visual cortex.
机译:全局和局部元素以及低空间和高空间频率的处理被认为是相互关联的。这方面的证据来自发现,这些发现表明大脑局部区域的整体/局部元素以及低/高空间频率似乎重叠。本研究旨在提供直接证据,表明全局和局部视觉元素处理之间的地形差异可以通过它们的空间频率含量直接解释,并研究这种关系在何时出现。这是通过研究与事件相关的电位(ERP)和未经过滤的,低通或高通滤波后的分层刺激引起的源模型来完成的。结果表明,分别去除低和高空间频率会影响全局和局部目标的性能。 ERP数据表明,在250毫秒时,全局/局部目标的处理与空间频率之间存在交互作用,因为在此时间点,低空间频率的去除会降低与处理全局目标相关的活动。当确定这种效应的位置时,我们发现证据暗示空间频率含量确实会影响处理本地/全局目标的大脑区域。结果表明,全局信息的处理取决于其较低的空间频率含量,而空间频率含量较低,这是从侧面进行的。取而代之的是,本地信息的处理似乎取决于其较高的空间频率内容,而该内容的处理频率更高。因此,当前结果扩展了先前的结果,表明整体和局部处理取决于空间频率并在视皮层中视网膜定位。

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