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The neural basis of impossible figures: Evidence from an fMRI study of the two-pronged trident

机译:不可能数字的神经基础:来自两叉三叉戟功能磁共振成像研究的证据

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摘要

In the present study, we used the two-pronged trident task to investigate the neural basis of impossible figures processing by using event-related functional magnetic resonance imaging (fMRI). Our fMRI results showed that there were no brain regions with significantly stronger responses to possible condition than to impossible condition. However, impossible condition showed significantly more activation in the right inferior temporal gyrus (ITG), the fusiform gyrus (FG) and the right superior parietal gyrus (SPG). The right SPG in the dorsal visual pathway might be related to spatial information processing and the right lateral occipital complex (LOC) (FG and ITG) in the ventral visual pathway (the object-selective regions) might be related to the representation of the impossible 3D structure. Therefore, our results indicated that the impossible 3D structure might be difficult to be represented by human visual system, and the impossible perception might be derived from the detecting and resolving the contradiction in the subjects' interpretations according to different perceptions triggered by 3D cues.
机译:在本研究中,我们使用两管齐下的三叉戟任务,通过使用事件相关的功能磁共振成像(fMRI)研究不可能的图形处理的神经基础。我们的功能磁共振成像结果表明,没有大脑区域对可能状况的反应明显强于对不可能状况的反应。但是,不可能的情况表明右下颞回(ITG),梭形回(FG)和右顶顶回(SPG)的激活明显更多。背侧视觉通路中的右侧SPG可能与空间信息处理有关,而腹侧视觉通路中的右侧枕骨复合物(LOG)(FG和ITG)(对象选择区域)可能与不可能的表示有关。 3D结构。因此,我们的结果表明,不可能的3D结构可能难以用人类视觉系统表示,并且不可能的感知可能是根据3D线索触发的不同感知,通过检测和解决对象解释中的矛盾而得出的。

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