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枕叶皮质在早期失明者的听觉和触觉时长辨别任务中的参与。

The involvement of occipital cortex in the early blind in auditory and tactile duration discrimination tasks.

机构信息

Faculty of Behavioral Sciences, Utrecht University, Utrecht, The Netherlands.

出版信息

J Cogn Neurosci. 2010 Jul;22(7):1541-56. doi: 10.1162/jocn.2009.21285.

Abstract

Early blind participants outperform controls on several spatially oriented perceptual tasks such as sound localization and tactile orientation discrimination. Previous studies have suggested that the recruitment of occipital cortex in the blind is responsible for this improvement. For example, electroencephalographic studies showed an enlarged posterior negativity for the blind in these tasks compared to controls. In our study, the question was raised whether the early blind are also better at tasks in which the duration of auditory and tactile stimuli must be discriminated. The answer was affirmative. Our electroencephalographic data revealed an enlarged posterior negativity for the blind relative to controls. Source analyses showed comparable solutions in the case of auditory and tactile targets for the blind. These findings support the interpretation of these negativities in terms of a supramodal rather than a modality-specific process, although confirmation with more spatially sensitive methods seems necessary. We additionally examined whether the early blind are less affected by irrelevant tactile or auditory exogenous cues preceding auditory or tactile targets than controls. No differences in alerting and orienting effects of these cues were found between the blind and the controls. Together, our results support the view that major differences between early blind participants and sighted controls on auditory and tactile duration discrimination tasks relate to a late and likely supramodal process that takes place in occipital areas.

摘要

早期失明者在声音定位和触觉方向辨别等几个空间定向感知任务上优于对照组。先前的研究表明,失明者枕叶皮层的募集是这种改善的原因。例如,脑电图研究表明,与对照组相比,盲人大脑中这些任务的后负性较大。在我们的研究中,提出了一个问题,即早期失明者是否在必须区分听觉和触觉刺激持续时间的任务中表现更好。答案是肯定的。我们的脑电图数据显示,与对照组相比,盲人大脑中的后负性较大。源分析表明,对于盲人和对照组来说,听觉和触觉目标的情况是相似的。这些发现支持了这些负性的解释,即它们是超模式的,而不是模态特异性的过程,尽管似乎需要更具空间敏感性的方法来证实。我们还检查了早期失明者是否比对照组受到听觉或触觉目标之前的无关触觉或听觉外源性线索的影响更小。在这些线索的警觉和定向效应方面,盲人和对照组之间没有差异。总之,我们的研究结果支持这样一种观点,即早期失明者与视力正常者在听觉和触觉持续时间辨别任务上的主要差异与发生在枕叶区域的晚期且可能是超模式的过程有关。

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