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通过经颅磁刺激枕外侧皮质增强干扰物过滤

Augmenting distractor filtering via transcranial magnetic stimulation of the lateral occipital cortex.

作者信息

Eštočinová Jana, Lo Gerfo Emanuele, Della Libera Chiara, Chelazzi Leonardo, Santandrea Elisa

机构信息

Department of Neuroscience, Biomedicine and Movement Sciences, University of Verona, Verona, Italy.

Department of Neuroscience, Biomedicine and Movement Sciences, University of Verona, Verona, Italy; Department of Economics, Management and Statistics, University of Milan Bicocca, Milan, Italy.

出版信息

Cortex. 2016 Nov;84:63-79. doi: 10.1016/j.cortex.2016.08.012. Epub 2016 Sep 10.

Abstract

Visual selective attention (VSA) optimizes perception and behavioral control by enabling efficient selection of relevant information and filtering of distractors. While focusing resources on task-relevant information helps counteract distraction, dedicated filtering mechanisms have recently been demonstrated, allowing neural systems to implement suitable policies for the suppression of potential interference. Limited evidence is presently available concerning the neural underpinnings of these mechanisms, and whether neural circuitry within the visual cortex might play a causal role in their instantiation, a possibility that we directly tested here. In two related experiments, transcranial magnetic stimulation (TMS) was applied over the lateral occipital cortex of healthy humans at different times during the execution of a behavioral task which entailed varying levels of distractor interference and need for attentional engagement. While earlier TMS boosted target selection, stimulation within a restricted time epoch close to (and in the course of) stimulus presentation engendered selective enhancement of distractor suppression, by affecting the ongoing, reactive instantiation of attentional filtering mechanisms required by specific task conditions. The results attest to a causal role of mid-tier ventral visual areas in distractor filtering and offer insights into the mechanisms through which TMS may have affected ongoing neural activity in the stimulated tissue.

摘要

视觉选择性注意(VSA)通过有效地选择相关信息并过滤干扰物来优化感知和行为控制。虽然将资源集中在与任务相关的信息上有助于抵消干扰,但最近已经证明了专门的过滤机制,使神经系统能够实施适当的策略来抑制潜在干扰。目前关于这些机制的神经基础,以及视觉皮层内的神经回路是否可能在其形成中起因果作用的证据有限,我们在此直接测试了这种可能性。在两个相关实验中,在执行一项行为任务的不同时间,对健康人类的枕外侧皮层施加经颅磁刺激(TMS),该任务涉及不同程度的干扰物干扰和注意力参与需求。虽然早期的TMS促进了目标选择,但在接近(并在)刺激呈现的受限时间段内进行刺激,通过影响特定任务条件所需的注意力过滤机制的持续、反应性形成,导致干扰物抑制的选择性增强。结果证明了中级腹侧视觉区域在干扰物过滤中的因果作用,并为TMS可能影响受刺激组织中正在进行的神经活动的机制提供了见解。

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