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Neural Basis of Superior Performance of Action Videogame Players in an Attention-Demanding Task

机译:注意任务中动作视频游戏玩家卓越性能的神经基础

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摘要

Steady-state visual evoked potentials (SSVEPs) were recorded from action videogame players (VGPs) and from non-videogame players (NVGPs) during an attention-demanding task. Participants were presented with a multi-stimulus display consisting of rapid sequences of alphanumeric stimuli presented at rates of 8.6/12 Hz in the left/right peripheral visual fields, along with a central square at fixation flashing at 5.5 Hz and a letter sequence flashing at 15 Hz at an upper central location. Subjects were cued to attend to one of the peripheral or central stimulus sequences and detect occasional targets. Consistent with previous behavioral studies, VGPs detected targets with greater speed and accuracy than NVGPs. This behavioral advantage was associated with an increased suppression of SSVEP amplitudes to unattended peripheral sequences in VGPs relative to NVGPs, whereas the magnitude of the attended SSVEPs was equivalent in the two groups. Group differences were also observed in the event-related potentials to targets in the alphanumeric sequences, with the target-elicited P300 component being of larger amplitude in VGPS than NVGPs. These electrophysiological findings suggest that the superior target detection capabilities of the VGPs are attributable, at least in part, to enhanced suppression of distracting irrelevant information and more effective perceptual decision processes.
机译:在需要注意的任务中,从动作视频游戏玩家(VGP)和非视频游戏玩家(NVGP)记录了稳态视觉诱发电位(SSVEP)。向参与者展示了多刺激显示,包括在左/右周边视野中以8.6 / 12 Hz的速率呈现的字母数字刺激的快速序列,以及固定点闪烁的中心正方形(5.5 Hz)和闪烁的字母序列。在上部中央位置为15 Hz。提示受试者注意周围或中央刺激序列之一并检测偶然的靶标。与以前的行为研究一致,VGP比NVGP更快,更准确地检测到目标。这种行为上的优势与VGP中相对于NVGP的无人值守的外围序列对SSVEP幅度的抑制作用增强有关,而两组中参与的SSVEP的幅度相等。在与字母数字序列中的靶标相关的事件相关电位中也观察到了组差异,靶标引起的P300成分在VGPS中的幅度大于NVGP。这些电生理学发现表明,VGP的出色目标检测能力至少部分归因于增强了对分散无关信息的抑制以及更有效的感知决策过程。

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