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Explicit behavioral detection of visual changes develops without their implicit neurophysiological detectability

机译:视觉变化的显式行为检测发展而没有其隐含的神经生理学可检测性

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摘要

Change blindness is a failure of reporting major changes across consecutive images if separated, e.g., by a brief blank interval. Successful change detection across interrupts requires focal attention to the changes. However, findings of implicit detection of visual changes during change blindness have raised the question of whether the implicit mode is necessary for development of the explicit mode. To this end, we recorded the visual mismatch negativity (vMMN) of the event-related potentials (ERPs) of the brain, an index of implicit pre-attentive visual change detection, in adult humans performing an oddball-variant of change blindness flicker task. Images of 500 ms in duration were presented repeatedly in continuous sequences, alternating with a blank interval (either 100 ms or 500 ms in duration throughout a stimulus sequence). Occasionally (P = 0.2), a change (referring to color changes, omissions, or additions of objects or their parts in the image) was present. The participants attempted to explicitly (via voluntary button press) detect the occasional change. With both interval durations, it took 10–15 change presentations in average for the participants to eventually detect the changes explicitly in a sequence, the 500 ms interval only requiring a slightly longer exposure to the series than the 100 ms one. Nevertheless, prior to this point of explicit detectability, the implicit detection of the changes vMMN could only be observed with the 100 ms intervals. These findings of explicit change detection developing with and without implicit change detection may suggest that the two modes of change detection recruit independent neural mechanisms.
机译:如果由于例如短暂的空白间隔而被分开,则改变盲目性是无法报告连续图像中的主要改变的。跨中断成功检测变更需要关注变更。然而,在变更盲症期间对视觉变化进行隐式检测的发现提出了以下问题:隐式模式是否对于发展显式模式是必需的。为此,我们记录了成年人中执行变化盲视闪烁任务的怪异变量的大脑中与事件相关的电位(ERP)的视觉失配阴性(vMMN),这是隐式的注意力集中的视觉变化检测的指标。持续时间为500 ms的图像以连续序列重复显示,并与空白间隔交替(整个刺激序列的持续时间为100 ms或500 ms)。有时会出现变化(P = 0.2)(指图像中对象或其部分的颜色变化,遗漏或增加)。参与者试图明确地(通过自愿按下按钮)检测偶然的变化。在这两个时间间隔内,参与者平均花费10–15个变化演示文稿才能最终明确地发现序列中的变化,而500 ms的间隔只需要比100 ms的暴露时间稍长。但是,在此明确的可检测性之前,只能以100 ms的间隔观察到对vMMN变化的隐式检测。在有或没有隐式变化检测的情况下,显式变化检测的这些发现可能表明,变化检测的两种模式招募了独立的神经机制。

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