Ludwig-Maximilians-University of Munich.
University of California, San Diego.
J Cogn Neurosci. 2019 Mar;31(3):377-389. doi: 10.1162/jocn_a_01230. Epub 2018 Jan 8.
Action video game players (AVGPs) outperform non-action video game players (NAVGPs) on a range of perceptual and attentional tasks. Although several studies have reported neuroplastic changes within the frontoparietal networks of attention in AVGPs, little is known about possible changes in attentional modulation in low-level visual areas. To assess the contribution of these different levels of neural processing to the perceptual and attentional enhancements noted in AVGPs, visual event-related potentials (ERPs) were recorded from 14 AVGPs and 14 NAVGPs during a target discrimination task that required participants to attend to rapid sequences of Gabor patches under either focused or divided attention conditions. AVGPs responded faster to target Gabors in the focused attention condition compared with the NAVGPs. Correspondingly, ERPs to standard Gabors revealed a more pronounced negativity in the time range of the parietally generated anterior N1 component in AVGPs compared with NAVGPs during focused attention. In addition, the P2 component of the visual ERP was more pronounced in AVGPs than in NAVGPs over the hemisphere contralateral to the stimulus position in response to standard Gabors. Contrary to predictions, however, attention-modulated occipital components generated in the low-level extrastriate visual pathways, including the P1 and posterior N1, showed no significant group differences. Thus, the main neural signature of enhanced perceptual and attentional control functions in AVGPs appears linked to an attention-dependent parietal process, indexed by the anterior N1 component, and possibly to more efficient higher-order perceptual processing, indexed by the P2 component.
动作视频游戏玩家(AVGPs)在一系列感知和注意力任务上优于非动作视频游戏玩家(NAVGPs)。尽管有几项研究报告称,AVGPs 的额顶注意网络中存在神经可塑性变化,但对于注意力在低水平视觉区域中的调节可能发生的变化却知之甚少。为了评估这些不同层次的神经处理对 AVGPs 中注意到的感知和注意力增强的贡献,我们在一项目标辨别任务中记录了 14 名 AVGPs 和 14 名 NAVGPs 的视觉事件相关电位(ERP),该任务要求参与者在集中或分散注意力的条件下,快速注意到伽柏补丁序列。与 NAVGPs 相比,AVGPs 在集中注意力条件下对目标伽柏的反应更快。相应地,与 NAVGPs 相比,标准伽柏的 ERP 揭示了在集中注意力期间,AVGPs 的顶叶产生的前 N1 成分的时间范围内更明显的负性。此外,与 NAVGPs 相比,AVGPs 在对标准伽柏的反应中,在刺激位置对侧的半球上,视觉 ERP 的 P2 成分更为明显。然而,与预测相反,在低水平的外纹状视觉通路中产生的注意调制的枕部成分,包括 P1 和后 N1,在组间没有显示出显著差异。因此,AVGPs 中增强的感知和注意力控制功能的主要神经特征似乎与注意力依赖的顶叶过程有关,该过程由前 N1 成分表示,并且可能与更有效的高级感知处理有关,该过程由 P2 成分表示。