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基于特征的局部与整体注意中,节律性经颅磁刺激 α 频率的因果关系。

Causal implication by rhythmic transcranial magnetic stimulation of alpha frequency in feature-based local vs. global attention.

机构信息

Wellcome Trust Centre for Neuroimaging at UCL, Institute of Neurology, University College London, London, UK.

出版信息

Eur J Neurosci. 2012 Mar;35(6):968-74. doi: 10.1111/j.1460-9568.2012.08020.x. Epub 2012 Mar 7.

Abstract

Although oscillatory activity in the alpha band was traditionally associated with lack of alertness, more recent work has linked it to specific cognitive functions, including visual attention. The emerging method of rhythmic transcranial magnetic stimulation (TMS) allows causal interventional tests for the online impact on performance of TMS administered in short bursts at a particular frequency. TMS bursts at 10 Hz have recently been shown to have an impact on spatial visual attention, but any role in featural attention remains unclear. Here we used rhythmic TMS at 10 Hz to assess the impact on attending to global or local components of a hierarchical Navon-like stimulus (D. Navon (1977) Forest before trees: The precedence of global features in visual perception. Cognit. Psychol., 9, 353), in a paradigm recently used with TMS at other frequencies (V. Romei, J. Driver, P.G. Schyns & G. Thut. (2011) Rhythmic TMS over parietal cortex links distinct brain frequencies to global versus local visual processing. Curr. Biol., 2, 334-337). In separate groups, left or right posterior parietal sites were stimulated at 10 Hz just before presentation of the hierarchical stimulus. Participants had to identify either the local or global component in separate blocks. Right parietal 10 Hz stimulation (vs. sham) significantly impaired global processing without affecting local processing, while left parietal 10 Hz stimulation vs. sham impaired local processing with a minor trend to enhance global processing. These 10 Hz outcomes differed significantly from stimulation at other frequencies (i.e. 5 or 20 Hz) over the same site in other recent work with the same paradigm. These dissociations confirm differential roles of the two hemispheres in local vs. global processing, and reveal a frequency-specific role for stimulation in the alpha band for regulating feature-based visual attention.

摘要

虽然 alpha 波段的振荡活动传统上与警觉度降低有关,但最近的研究将其与特定的认知功能联系起来,包括视觉注意力。新兴的节律性经颅磁刺激(TMS)方法允许进行因果干预测试,即在特定频率下短时间内给予 TMS 对在线性能的影响。最近已经表明,10 Hz 的 TMS 脉冲对空间视觉注意力有影响,但在特征注意力方面的任何作用仍不清楚。在这里,我们使用 10 Hz 的节律性 TMS 来评估其对分层类似纳文(D. Navon (1977) Forest before trees: The precedence of global features in visual perception. Cognit. Psychol., 9, 353)刺激的全局或局部成分的注意的影响,该范式最近在其他频率的 TMS 中使用(V. Romei, J. Driver, P.G. Schyns & G. Thut. (2011) Rhythmic TMS over parietal cortex links distinct brain frequencies to global versus local visual processing. Curr. Biol., 2, 334-337)。在单独的组中,在呈现分层刺激之前,用 10 Hz 刺激左或右后顶叶部位。参与者必须在单独的块中识别局部或全局成分。与假刺激相比,右顶叶 10 Hz 刺激(vs. 假刺激)显著损害了全局处理,而不影响局部处理,而左顶叶 10 Hz 刺激(vs. 假刺激)损害了局部处理,并有轻微趋势增强全局处理。这些 10 Hz 的结果与在同一范式的其他最近研究中,同一部位用其他频率(即 5 或 20 Hz)刺激有显著差异。这些分离证实了两个半球在局部与全局处理中的不同作用,并揭示了在调节基于特征的视觉注意力时,alpha 波段中刺激的频率特异性作用。

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