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Neural Correlates of Motion-induced Blindness in the Human Brain

机译:人脑运动诱发失明的神经相关

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摘要

Motion-induced blindness (MIB) is a visual phenomenon in which highly salient visual targets spontaneously disappear from visual awareness (and subsequently reappear) when superimposed on a moving background of distracters. Such fluctuations in awareness of the targets, although they remain physically present, provide an ideal paradigm to study the neural correlates of visual awareness. Existing behavioral data on MIB are consistent both with a role for structures early in visual processing and with involvement of high-level visual processes. To further investigate this issue, we used high field functional MRI to investigate signals in human low-level visual cortex and motion-sensitive area V5/MT while participants re-rnported disappearance and reappearance of an MIB target. Surprisingly, perceptual invisibility of the target was coupled to an increase in activity in low-level visual cortex plus area V5/MT compared with when the target was visible. This increase was largest in retinotopic regions representing the target location. One possibility is that our findings result from an active process of completion of the field of distracters that acts locally in the visual cortex, coupled to a more global process that facilitates invisibility in general visual cortex. Our findings show that the earliest anatomical stages of human visual cortical processing are implicated in MIB, as with other forms of bistable perception.
机译:运动诱发的失明(MIB)是一种视觉现象,当高度显着的视觉目标叠加在移动的干扰物背景上时,会从视觉意识中自发消失(并随后重新出现)。这些目标意识的波动,尽管它们仍然存在于身体中,但为研究视觉意识的神经相关性提供了理想的范例。 MIB上的现有行为数据与视觉处理中早期结构的作用以及高级视觉过程的参与都一致。为了进一步研究这个问题,我们使用高场功能MRI来研究人类低层视觉皮层和运动敏感区域V5 / MT中的信号,而参与者则重新报告了MIB目标的消失和重新出现。出人意料的是,与目标可见时相比,目标的可感知的隐形性与低级视觉皮层加上区域V5 / MT的活动增加有关。这种增加在代表目标位置的视网膜局部区域最大。一种可能性是,我们的发现是由完成在视觉皮层中局部起作用的分散器区域的积极过程所导致的,再加上更有利于在普通视觉皮层中隐身的全局过程。我们的发现表明,与其他形式的双稳态知觉一样,人类视觉皮层加工的最早解剖阶段也与MIB有关。

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