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大规模脑网络在非空间注意更新中的作用:探索颞顶联合区的功能。

Large-scale brain networks underlying non-spatial attention updating: Towards understanding the function of the temporoparietal junction.

机构信息

Laboratory of Emotions Neurobiology, Nencki Institute of Experimental Biology of Polish Academy of Sciences, Warsaw, Poland.

Bioimaging Research Center, World Hearing Center, Institute of Physiology and Pathology of Hearing, Warsaw, Poland.

出版信息

Cortex. 2020 Dec;133:247-265. doi: 10.1016/j.cortex.2020.09.023. Epub 2020 Oct 10.

Abstract

The temporoparietal junction (TPJ) and related areas are activated when a target stimulus appears at unexpected locations in Posner's spatial-cueing paradigm, and also when deviant stimuli are presented within a series of standard events in oddball paradigms. This type of activation corresponds to the ventral attention network (VAN), for regions defined on the basis of the spatial task. However, involvement of the VAN in object-based updating of attention has rarely been examined. In the present study, we used functional magnetic resonance imaging to investigate brain responses to (i) invalid targets after category-cueing and (ii) neutrally cued targets deviating in category from the background series of pictures. Bilateral TPJ activation was observed in response to invalidly cued targets, as compared to neutrally cued targets. Reference to the main large-scale brain networks showed that peaks of this activation located in the angular gyrus and inferior parietal lobule belonged to the default mode (DMN) and fronto-parietal networks (FPN), respectively. We found that VAN regions were involved only for simple detection activity. We conclude that spatial and non-spatial reorienting of attention rely on different network underpinnings. Our data suggest that DMN and FPN activity may support the ability to disengage from contextually irrelevant information.

摘要

颞顶联合区(TPJ)及相关区域在 Posner 空间线索范式中目标刺激出现在意想不到的位置时,以及在Oddball 范式中标准事件系列中出现异常刺激时被激活。这种类型的激活对应于腹侧注意网络(VAN),因为它是基于空间任务定义的区域。然而,VAN 在基于对象的注意更新中的参与很少被研究。在本研究中,我们使用功能磁共振成像来研究大脑对(i)类别线索后无效目标和(ii)与背景图片系列在类别上偏离的中性线索目标的反应。与中性线索目标相比,双侧 TPJ 在对无效线索目标的反应中被激活。参考主要的大脑大网络,我们发现这个激活的峰值位于角回和下顶叶,分别属于默认模式(DMN)和额顶网络(FPN)。我们发现,只有简单的检测活动涉及 VAN 区域。我们得出的结论是,空间和非空间注意的重新定向依赖于不同的网络基础。我们的数据表明,DMN 和 FPN 的活动可能支持从上下文不相关信息中解脱出来的能力。

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