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首页> 外文期刊>Neuron >Preserved functional specialization for spatial processing in the middle occipital gyrus of the early blind.
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Preserved functional specialization for spatial processing in the middle occipital gyrus of the early blind.

机译:保留功能性专业化,用于早期盲者的枕中中回的空间处理。

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摘要

The occipital cortex (OC) of early-blind humans is activated during various nonvisual perceptual and cognitive tasks, but little is known about its modular organization. Using functional MRI we tested whether processing of auditory versus tactile and spatial versus nonspatial information was dissociated in the OC of the early blind. No modality-specific OC activation was observed. However, the right middle occipital gyrus (MOG) showed a preference for spatial over nonspatial processing of both auditory and tactile stimuli. Furthermore, MOG activity was correlated with accuracy of individual sound localization performance. In sighted controls, most of extrastriate OC, including the MOG, was deactivated during auditory and tactile conditions, but the right MOG was more activated during spatial than nonspatial visual tasks. Thus, although the sensory modalities driving the neurons in the reorganized OC of blind individuals are altered, the functional specialization of extrastriate cortex is retained regardless of visual experience.
机译:早期盲人的枕叶皮质(OC)在各种非视觉感知和认知任务中被激活,但对其模块化组织知之甚少。使用功能性MRI,我们测试了早期盲人的OC是否分离了听觉与触觉,空间与非空间信息的处理。没有观察到特定于模式的OC激活。但是,右中枕回(MOG)对听觉和触觉刺激均表现出对空间而非空间处理的偏爱。此外,MOG活动与单个声音定位性能的准确性相关。在有视力的对照中,包括听觉和听觉在内的大多数外泌体OC在听觉和触觉条件下均被停用,但是在空间上,正确的MOG比非空间视觉任务更容易被激活。因此,尽管在盲人的重组OC中驱动神经元的感觉方式发生了变化,但无论视觉经验如何,都保留了超细皮层的功能特化。

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