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命名功能的右半球重新映射取决于中风后失语症的病变大小和位置。

Right Hemisphere Remapping of Naming Functions Depends on Lesion Size and Location in Poststroke Aphasia.

作者信息

Skipper-Kallal Laura M, Lacey Elizabeth H, Xing Shihui, Turkeltaub Peter E

机构信息

Department of Neurology, Georgetown University Medical Center, Washington, DC, USA.

Department of Neurology, Georgetown University Medical Center, Washington, DC, USA; Research Division, MedStar National Rehabilitation Hospital, Washington, DC, USA.

出版信息

Neural Plast. 2017;2017:8740353. doi: 10.1155/2017/8740353. Epub 2017 Jan 12.

Abstract

The study of language network plasticity following left hemisphere stroke is foundational to the understanding of aphasia recovery and neural plasticity in general. Damage in different language nodes may influence whether local plasticity is possible and whether right hemisphere recruitment is beneficial. However, the relationships of both lesion size and location to patterns of remapping are poorly understood. In the context of a picture naming fMRI task, we tested whether lesion size and location relate to activity in surviving left hemisphere language nodes, as well as homotopic activity in the right hemisphere during covert name retrieval and overt name production. We found that lesion size was positively associated with greater right hemisphere activity during both phases of naming, a pattern that has frequently been suggested but has not previously been clearly demonstrated. During overt naming, lesions in the inferior frontal gyrus led to deactivation of contralateral frontal areas, while lesions in motor cortex led to increased right motor cortex activity. Furthermore, increased right motor activity related to better naming performance only when left motor cortex was lesioned, suggesting compensatory takeover of speech or language function by the homotopic node. These findings demonstrate that reorganization of language function, and the degree to which reorganization facilitates aphasia recovery, is dependent on the size and site of the lesion.

摘要

研究左半球中风后语言网络可塑性对于理解失语症恢复及一般神经可塑性至关重要。不同语言节点的损伤可能影响局部可塑性是否可行以及右半球的代偿是否有益。然而,病变大小和位置与重新映射模式之间的关系仍知之甚少。在一项图片命名功能磁共振成像任务中,我们测试了病变大小和位置是否与存活的左半球语言节点的活动有关,以及在隐蔽命名检索和公开命名生成过程中右半球的同位活动情况。我们发现,在命名的两个阶段,病变大小与右半球更活跃呈正相关,这种模式虽常被提及但此前未得到明确证实。在公开命名过程中,额下回的病变导致对侧额叶区域失活,而运动皮层的病变则导致右运动皮层活动增加。此外,只有当左运动皮层受损时,右运动活动增加才与更好的命名表现相关,这表明同位节点对言语或语言功能进行了代偿性接管。这些发现表明,语言功能的重组以及重组促进失语症恢复的程度取决于病变的大小和位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5ce/5266856/121de7a8d456/NP2017-8740353.001.jpg

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