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Distinct effects of attention on the neural responses to form and motion processing: A SSVEP source-imaging study

机译:注意对神经对形式和运动处理的不同影响:SSVEP源成像研究

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Abstract Abstract: Abstract?? We measured neural responses to local and global aspects of form and motion stimuli using frequency-tagged, steady-state visual evoked potentials (SSVEPs) combined with magnetic resonance imaging (MRI) data. Random dot stimuli were used to portray either dynamic Glass patterns (Glass, 1969) or coherent motion displays. SSVEPs were used to estimate neural activity in a set of fMRI-defined visual areas in each subject. To compare activity associated with local versus global processing, we analyzed two frequency components of the SSVEP in each visual area: the high temporal frequency at which the local dots were updated (30 Hz) and the much lower frequency corresponding to updates in the global structure (0.83 Hz). Local and global responses were evaluated in the context of two different behavioral tasksa??subjects had to either direct their attention toward or away from the global coherence of the stimuli. The data show that the effect of attention on global and local responses is both stimulus and visual area dependent. When attention was directed away from stimulus coherence, both local and global responses were higher in the coherent motion than Glass pattern condition. Directing attention to coherence in Glass patterns enhanced global activity in areas LOC, hMT+, V4, V3a, and V1, while attention to global motion modulated responses by a smaller amount in a smaller set of areas: V4, hMT+, and LOC. In contrast, directing attention towards stimulus coherence weakly increased local responses to both coherent motion and Glass patterns. These results suggest that visual attention differentially modulates the activity of early visual areas at both local and global levels of structural encoding.
机译:摘要摘要:摘要?我们使用频率标记的稳态视觉诱发电位(SSVEP)结合磁共振成像(MRI)数据,测量了对形式和运动刺激的局部和全局方面的神经反应。随机点刺激被用来描绘动态的Glass模式(Glass,1969)或连贯的运动显示。 SSVEP用于估计每个受试者在一组功能磁共振成像定义的视觉区域中的神经活动。为了比较与本地处理和全局处理相关的活动,我们分析了每个视觉区域中SSVEP的两个频率分量:本地点更新的高时间频率(30 Hz)和与全局结构更新相对应的低得多的频率(0.83 Hz)。在两种不同的行为任务的背景下评估了局部和整体反应,受试者必须将他们的注意力引向或远离刺激的整体连贯性。数据表明,注意力对整体和局部反应的影响既取决于刺激,也取决于视觉区域。当注意力从刺激的连贯性移开时,连贯运动中的局部和全局响应都比Glass模式条件要高。专注于Glass模式中的连贯性可以增强LOC,hMT +,V4,V3a和V1区域中的全局活动,而在较小的一组区域(V4,hMT +和LOC)中以较小的数量关注全局运动调制响应。相反,将注意力集中在刺激的连贯性上会弱化对连贯运动和Glass模式的局部响应。这些结果表明视觉注意力在结构编码的局部和全局水平上差异性地调节了早期视觉区域的活动。

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