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Minor and Unsystematic Cortical Topographic Changes of Attention Correlates between Modalities

机译:注意力和模式的微小和非系统性皮质地形变化相关

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摘要

In this study we analyzed the topography of induced cortical oscillations in 20 healthy individuals performing simple attention tasks. We were interested in qualitatively replicating our recent findings on the localization of attention-induced beta bands during a visual task , and verifying whether significant topographic changes would follow the change of attention to the auditory modality. We computed corrected latency averaging of each induced frequency bands, and modeled their generators by current density reconstruction with Lp-norm minimization. We quantified topographic similarity between conditions by an analysis of correlations, whereas the inter-modality significant differences in attention correlates were illustrated in each individual case. We replicated the qualitative result of highly idiosyncratic topography of attention-related activity to individuals, manifested both in the beta bands, and previously studied slow potential distributions . Visual inspection of both scalp potentials and distribution of cortical currents showed minor changes in attention-related bands with respect to modality, as compared to the theta and delta bands, known to be major contributors to the sensory-related potentials. Quantitative results agreed with visual inspection, supporting to the conclusion that attention-related activity does not change much between modalities, and whatever individual changes do occur, they are not systematic in cortical localization across subjects. We discuss our results, combined with results from other studies that present individual data, with respect to the function of cortical association areas.
机译:在这项研究中,我们分析了20名执行简单注意任务的健康个体的诱发皮层振荡的地形。我们感兴趣的是定性地复制我们在视觉任务中对注意力诱导的β带进行定位的最新发现,并验证是否重大的地形变化会随着对听觉方式的关注而改变。我们计算了每个感应频段的校正延迟平均,并通过电流密度重构(以Lp范数最小化)对它们的生成器进行了建模。我们通过相关性分析对条件之间的地形相似性进行了量化,而在每种情况下,注意力相关性之间的模态间显着差异也得到了说明。我们将注意力相关活动的高度特质地形的定性结果复制给了个体,既在β谱带中均表现出来,又先前研究了缓慢的电位分布。目视检查头皮电位和皮质电流的分布,发现与注意力相关的波段在形态上的变化很小,而θ和δ波段则是已知的与感觉相关的电位的主要来源。定量结果与视觉检查相吻合,支持以下结论:与注意力相关的活动在各模态之间变化不大,并且无论发生什么个体变化,它们在整个受试者的皮层定位中都不是系统的。我们讨论我们的结果,并结合其他研究的结果,这些研究提出了有关皮层缔合区域功能的单独数据。

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