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首页> 外文期刊>Journal of Cognitive Neuroscience >Visual Mental Imagery Activates Topographically Organized Visual Cortex: PET Investigations
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Visual Mental Imagery Activates Topographically Organized Visual Cortex: PET Investigations

机译:视觉心理影像激活了地形组织的视觉皮层:PET研究

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Cerebral blood flow was measured using positron emission tomography (PET) in three experiments while subjects performed mental imagery or analogous perceptual tasks. In Experiment 1, the subjects either visualized letters in grids and decided whether an X mark would have fallen on each letter if it were actually in the grid, or they saw letters in grids and decided whether an X mark fell on each letter. A region identified as part of area 17 by the Talairach and Tournoux (1988) atlas, in addition to other areas involved in vision, was activated more in the mental imagery task than in the perception task. In Experiment 2, the identical stimuli were presented in imagery and baseline conditions, but subjects were asked to form images only in the imagery condition; the portion of area 17 that was more active in the imagery condition of Experiment 1 was also more activated in imagery than in the baseline condition, as was part of area 18. Subjects also were tested with degraded perceptual stimuli, which caused visual cortex to be activated to the same degree in imagery and perception. In both Experiments 1 and 2, however, imagery selectively activated the extreme anterior part of what was identified as area 17, which is inconsistent with the relatively small size of the imaged stimuli. These results, then, suggest that imagery may have activated another region just anterior to area 17. In Experiment 3, subjects were instructed to close their eyes and evaluate visual mental images of upper case letters that were formed at a small size or large size. The small mental images engendered more activation in the posterior portion of visual cortex, and the large mental images engendered more activation in anterior portions of visual cortex. This finding is strong evidence that imagery activates topographically mapped cortex. The activated regions were also consistent with their being localized in area 17. Finally, additional results were consistent with the existence of two typ- s of imagery, one that rests on allocating attention to form a pattern and one that rests on activating stored visual memories.
机译:在三个实验中,使用正电子发射断层扫描(PET)测量了大脑的血流,而受试者则进行了心理成像或类似的感知任务。在实验1中,受试者要么可视化网格中的字母,然后确定如果每个字母实际上都在网格中,那么X标记是否会落在每个字母上,或者他们看到网格中的字母,并判断是否在每个字母上都出现一个X标记。除了其他涉及视觉的区域外,由Talairach和Tournoux(1988)地图集确定为第17区域一部分的区域在精神成像任务中比在感知任务中被激活更多。在实验2中,在图像和基准条件下呈现了相同的刺激,但是要求受试者仅在图像条件下形成图像;与基线条件相比,在实验1的成像条件下更活跃的区域17的部分在成像中的激活程度也更高,区域18的一部分也是如此。还对受试者进行了退化的知觉刺激测试,导致视觉皮层被破坏。在图像和感知上达到相同程度的激活。然而,在实验1和2中,图像选择性地激活了被识别为区域17的最前部,这与成像刺激物的相对较小尺寸不一致。然后,这些结果表明,图像可能已经激活了区域17之前的另一个区域。在实验3中,指示受试者闭上眼睛并评估以小尺寸或大尺寸形成的大写字母的视觉心理图像。小的精神图像在视觉皮层的后部引起更多的激活,而大的精神图像在视觉皮层的前部引起更多的激活。这一发现是图像激活地形映射皮层的有力证据。被激活的区域也与它们位于区域17一致。最后,另外的结果与存在两种图像一致,一种图像依靠分配注意力以形成图案,另一种图像依靠激活存储的视觉记忆。

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