首页> 外文期刊>Brain: A journal of neurology >The visual word form area: spatial and temporal characterization of an initial stage of reading in normal subjects and posterior split-brain patients.
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The visual word form area: spatial and temporal characterization of an initial stage of reading in normal subjects and posterior split-brain patients.

机译:视觉单词形式区域:正常受试者和后脑裂患者的阅读初始阶段的时空特征。

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A standard model of word reading postulates that visual information is initially processed by occipitotemporal areas contralateral to the stimulated hemifield, from whence it is subsequently transferred to the visual word form (VWF) system, a left inferior temporal region specifically devoted to the processing of letter strings. For stimuli displayed in the left visual field, this transfer proceeds from the right to the left hemisphere through the posterior portion of the corpus callosum. In order to characterize the spatial and temporal organization of these processes, reading tasks with split-field presentation were performed by five control subjects and by two patients suffering from left hemialexia following posterior callosal lesions. The subjects' responses were studied using behavioural measures and functional brain imaging techniques, providing both high spatial resolution (functional MRI, fMRI) and high temporal resolution (high-density event-related potentials, ERPs). Early visual processing was revealed as activations contralateral to stimulation, located by fMRI in the inferior occipitotemporal region and presumably coincident with area V4. A negative wave occurring 150-160 ms post-stimulus, also strictly contralateral to stimulation, was recorded over posterior electrodes. In contrast with these hemifield-dependent effects, the VWF system was revealed as a strictly left-hemispheric activation which, in control subjects, was identical for stimuli presented in the left or in the right hemifield and was located in the middle portion of the left fusiform gyrus. The electrical signature of the VWF system consisted of a unilateral sharp negativity, recorded 180-200 ms post-stimulus over left inferior temporal electrodes. In callosal patients, due to the inability of visual information to pass across the posterior part of the corpus callosum, the VWF system was activated only by stimuli presented in the right visual field. Similarly, a significant influence of the wordon-word status on ERPs recorded over the left hemisphere was discernible for either hemifield in controls, while it affected only right-hemifield stimuli in callosal patients. These findings provide direct support for the main components of the classical model of reading and help specify their timing and cerebral substrates.
机译:一个标准的单词阅读模型假定视觉信息最初是由与受激半场相反的枕颞区处理的,随后从那里被转移到视觉字形(VWF)系统,这是左下颞区,专门用于处理字母字符串。对于在左视野中显示的刺激,这种转移通过call体的后部从右向左半球进行。为了表征这些过程的时空组织,由五个控制对象和两名在call骨后部损伤后患有左半脑缺氧的患者进行了具有裂场表现的阅读任务。使用行为测量和功能性脑成像技术研究了受试者的反应,既提供了高空间分辨率(功能性MRI,fMRI)又提供了高时间分辨率(高密度事件相关电位,ERP)。早期视觉处理被揭示为刺激的对侧激活,通过功能磁共振成像位于枕下颞部区域,大概与V4区域重合。刺激后150-160 ms发生的负波,也严格与刺激相反,被记录在后电极上。与这些依赖于半场的效应相反,VWF系统显示为严格的左半球激活,在控制对象中,其与左侧或右侧半场中呈现的刺激相同,并且位于左侧的中部梭状回。 VWF系统的电信号包括单侧尖锐的负电性,在刺激后180-200毫秒记录在左下颞电极上。在call骨患者中,由于视觉信息无法穿过call体的后部,仅通过在正确视野中呈现的刺激来激活VWF系统。类似地,对于对照中的任一半球,在左半球记录的单词/非单词状态对ERP的显着影响是明显的,而在call骨患者中仅影响右半场的刺激。这些发现为经典阅读模型的主要组成部分提供了直接支持,并有助于指定其时机和大脑基础。

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