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Synaesthetic colour in the brain: Beyond colour areas. A functional magnetic resonance imaging study of synaesthetes and matched controls

机译:大脑中的通感色彩:超越色彩区域。联觉和匹配对照的功能性磁共振成像研究

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摘要

Background: In synaesthesia, sensations in a particular modality cause additional experiences in a second, unstimulated modality (e.g., letters elicit colour). Understanding how synaesthesia is mediated in the brain can help to understand normal processes of perceptual awareness and multisensory integration. In several neuroimaging studies, enhanced brain activity for grapheme-colour synaesthesia has been found in ventral-occipital areas that are also involved in real colour processing. Our question was whether the neural correlates of synaesthetically induced colour and real colour experience are truly shared. Methodology/Principal Findings: First, in a free viewing functional magnetic resonance imaging (fMRI) experiment, we located main effects of synaesthesia in left superior parietal lobule and in colour related areas. In the left superior parietal lobe, individual differences between synaesthetes (projector-associator distinction) also influenced brain activity, confirming the importance of the left superior parietal lobe for synaesthesia. Next, we applied a repetition suppression paradigm in fMRI, in which a decrease in the BOLD (blood-oxygenated-level-dependent) response is generally observed for repeated stimuli. We hypothesized that synaesthetically induced colours would lead to a reduction in BOLD response for subsequently presented real colours, if the neural correlates were overlapping. We did find BOLD suppression effects induced by synaesthesia, but not within the colour areas. Conclusions/Significance: Because synaesthetically induced colours were not able to suppress BOLD effects for real colour, we conclude that the neural correlates of synaesthetic colour experience and real colour experience are not fully shared. We propose that synaesthetic colour experiences are mediated by higher-order visual pathways that lie beyond the scope of classical, ventral-occipital visual areas. Feedback from these areas, in which the left parietal cortex is likely to play an important role, may induce V4 activation and the percept of synaesthetic colour.
机译:背景:在联觉中,特定模态的感觉会在第二种不受刺激的模态(例如,字母引起颜色)中引起额外的体验。了解联觉在大脑中是如何介导的,可以帮助您理解感知意识和多感觉整合的正常过程。在一些神经影像学研究中,在腹枕区域也发现了石墨烯色联觉增强的大脑活动,这些部位也参与了真实的色彩处理。我们的问题是通感诱导的色彩和真实色彩体验的神经相关性是否真正共享。方法学/主要发现:首先,在自由观看功能磁共振成像(fMRI)实验中,我们在左顶叶小叶和颜色相关区域定位了联觉的主要作用。在左上顶叶中,联觉个体之间的个体差异(投影仪-关联器的区别)也影响了大脑的活动,证实了左上顶叶对于联觉的重要性。接下来,我们在功能磁共振成像中应用了重复抑制范例,对于重复刺激,通常观察到BOLD(血氧水平依赖性)反应的降低。我们假设,如果神经相关重叠,则通过麻醉诱导的颜色将导致随后呈现的真实颜色的BOLD响应降低。我们确实发现了由联觉诱发的BOLD抑制作用,但未在颜色区域内。结论/意义:由于通感诱导的色彩不能抑制实色的BOLD效应,因此我们得出结论,通感色彩体验和真实色彩体验的神经相关性并未得到完全共享。我们建议,联觉的色彩体验是由高级视觉通路所介导的,而这些视觉通路超出了经典的腹枕视觉区域的范围。在这些区域的反馈中,左顶叶皮层可能起重要作用,这些反馈可能会诱导V4激活和对联觉颜色的感知。

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