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Involvement of the Extrageniculate System in the Perception of Optical Illusions: A Functional Magnetic Resonance Imaging Study

机译:外生系统参与视幻觉:功能磁共振成像研究。

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摘要

Research on the neural processing of optical illusions can provide clues for understanding the neural mechanisms underlying visual perception. Previous studies have shown that some visual areas contribute to the perception of optical illusions such as the Kanizsa triangle and Müller-Lyer figure; however, the neural mechanisms underlying the processing of these and other optical illusions have not been clearly identified. Using functional magnetic resonance imaging (fMRI), we determined which brain regions are active during the perception of optical illusions. For our study, we enrolled 18 participants. The illusory optical stimuli consisted of many kana letters, which are Japanese phonograms. During the shape task, participants stated aloud whether they perceived the shapes of two optical illusions as being the same or not. During the word task, participants read aloud the kana letters in the stimuli. A direct comparison between the shape and word tasks showed activation of the right inferior frontal gyrus, left medial frontal gyrus, and right pulvinar. It is well known that there are two visual pathways, the geniculate and extrageniculate systems, which belong to the higher-level and primary visual systems, respectively. The pulvinar belongs to the latter system, and the findings of the present study suggest that the extrageniculate system is involved in the cognitive processing of optical illusions.
机译:对视错觉的神经处理的研究可以为理解视觉感知的神经机制提供线索。先前的研究表明,某些视觉区域有助于感知光学错觉,例如Kanizsa三角形和Müller-Lyer图。但是,尚未清楚地确​​定处理这些和其他错觉的神经机制。使用功能磁共振成像(fMRI),我们确定了视觉错觉感知期间活跃的大脑区域。在我们的研究中,我们招募了18名参与者。虚幻的光学刺激包括许多假名字母,它们是日本的留声机。在形状任务中,参与者大声说出他们是否感觉到两个光学幻觉的形状相同或不同。在单词任务中,参与者大声朗读刺激中的假名字母。形状和单词任务之间的直接比较显示了右下额回,左内侧额回和右肩突的激活。众所周知,有两个视觉通道,膝部和外体系统,分别属于高级视觉系统和初级视觉系统。肺泡属于后一种系统,本研究的发现表明外生体系统参与了视错觉的认知过程。

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