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颞顶叶皮层中听写写作的神经基础。

The neural basis for writing from dictation in the temporoparietal cortex.

机构信息

INSERM, Imagerie Cérébrale et Handicaps Neurologiques; Université de Toulouse, UPS, Imagerie Cérébrale et Handicaps Neurologiques UMR 825, Centres Hospitalo-Universitaires, Toulouse, France; Pôle NeuroSciences, Centres Hospitalo-Universitaires, Toulouse, France.

Centre de Recherche Cerveau et Cognition, Centres Hospitalo-Universitaires, Toulouse, France.

出版信息

Cortex. 2014 Jan;50:64-75. doi: 10.1016/j.cortex.2013.09.012. Epub 2013 Oct 19.

Abstract

Cortical electrical stimulation mapping was used to study neural substrates of the function of writing in the temporoparietal cortex. We identified the sites involved in oral language (sentence reading and naming) and writing from dictation, in order to spare these areas during removal of brain tumours in 30 patients (23 in the left, and 7 in the right hemisphere). Electrostimulation of the cortex impaired writing ability in 62 restricted cortical areas (.25 cm2). These were found in left temporoparietal lobes and were mostly located along the superior temporal gyrus (Brodmann's areas 22 and 42). Stimulation of right temporoparietal lobes in right-handed patients produced no writing impairments. However there was a high variability of location between individuals. Stimulation resulted in combined symptoms (affecting oral language and writing) in fourteen patients, whereas in eight other patients, stimulation-induced pure agraphia symptoms with no oral language disturbance in twelve of the identified areas. Each detected area affected writing in a different way. We detected the various different stages of the auditory-to-motor pathway of writing from dictation: either through comprehension of the dictated sentences (word deafness areas), lexico-semantic retrieval, or phonologic processing. In group analysis, barycentres of all different types of writing interferences reveal a hierarchical functional organization along the superior temporal gyrus from initial word recognition to lexico-semantic and phonologic processes along the ventral and the dorsal comprehension pathways, supporting the previously described auditory-to-motor process. The left posterior Sylvian region supports different aspects of writing function that are extremely specialized and localized, sometimes being segregated in a way that could account for the occurrence of pure agraphia that has long-been described in cases of damage to this region.

摘要

皮质电刺激映射被用于研究颞顶叶皮质中书写功能的神经基础。我们确定了参与口头语言(句子阅读和命名)和听写书写的部位,以便在 30 名患者(23 名在左半球,7 名在右半球)的脑瘤切除过程中避开这些区域。皮质电刺激损伤了 62 个受限皮质区(0.25cm2)的书写能力。这些区域位于左颞顶叶,主要位于颞上回(Brodmann 区 22 和 42)。刺激右颞顶叶在右利手患者中不会导致书写障碍。然而,个体之间的位置存在高度的可变性。在 14 名患者中,刺激导致了联合症状(影响口头语言和书写),而在另外 8 名患者中,刺激导致了 12 个已识别区域中的纯失写症,而没有口头语言障碍。每个检测到的区域以不同的方式影响书写。我们从听写中检测到了书写的听觉-运动通路的各个不同阶段:要么是通过理解所听写的句子(词聋区域),词汇语义检索,要么是语音处理。在组分析中,所有不同类型书写干扰的质心揭示了沿着颞上回的从初始单词识别到词汇语义和语音处理的沿腹侧和背侧理解途径的层次功能组织,支持了先前描述的听觉-运动过程。左后侧 Sylvian 区支持书写功能的不同方面,这些方面非常专业化和局部化,有时以可以解释该区域损伤长期以来描述的纯失写症的方式分离。

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