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Opposing roles of sensory and parietal cortices in awareness in a bistable motion illusion

机译:在双稳态运动错觉中,感觉和顶叶皮层在意识中的相反作用

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Motion-induced blindness (MIB) is a bistable visual phenomenon in which stationary disks surrounded by a moving pattern intermittently disappear from the viewer's awareness. We explored the cortical network that subserves the MIB phenomenon by targeting its constituent parts with disruptive transcranial magnetic stimulation (TMS), in the form of continuous theta burst stimulation (cTBS). Previous neuroimaging and TMS studies have implicated the right posterior parietal cortex (rPPC) in perceptual transitions such as binocular rivalry, while the visual area V5/MT has been suggested to play a key role in MIB. In this study, we found that cTBS applied to the rPPC lengthened the duration of disappearance in MIB, while cTBS applied to V5/MT shortened the duration of disappearance and decreased the frequency of disappearance in MIB. These results demonstrate a causal role for both the rPPC and V5/MT in MIB, and suggest that the rPPC is involved in shifting resources between competing functional areas, while V5/MT processing initiates and maintains MIB.
机译:运动诱发的失明(MIB)是一种双稳态视觉现象,其中被移动模式包围的固定盘从观看者的意识中间歇地消失。我们探索了皮层网络,该皮层网络通过以连续θ爆裂刺激(cTBS)的形式通过破坏性经颅磁刺激(TMS)靶向其组成部分,从而保护了MIB现象。先前的神经影像学和TMS研究已将右后顶叶皮层(rPPC)牵涉到诸如双眼竞争之类的知觉转变中,而视觉区域V5 / MT已被认为在MIB中起关键作用。在这项研究中,我们发现cTBS应用于rPPC可以延长MIB消失的持续时间,而cTBS应用于V5 / MT可以缩短消失的持续时间并降低MIB消失的频率。这些结果证明了rPPC和V5 / MT在MIB中都具有因果作用,并表明rPPC参与了竞争功能区域之间的资源转移,而V5 / MT处理启动并维护了MIB。

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