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命名功能定义连接组中慢性灰质和白质卒中病变的行为影响

Behavioral Effects of Chronic Gray and White Matter Stroke Lesions in a Functionally Defined Connectome for Naming.

机构信息

1 First Affiliated Hospital of Sun Yat-Sen University, Guangzhou, China.

2 Georgetown University Medical Center, Washington, DC, USA.

出版信息

Neurorehabil Neural Repair. 2018 Jun;32(6-7):613-623. doi: 10.1177/1545968318780351. Epub 2018 Jun 12.

Abstract

BACKGROUND

In functional magnetic resonance imaging studies, picture naming engages widely distributed brain regions in the parietal, frontal, and temporal cortices. However, it remains unknown whether those activated areas, along with white matter pathways between them, are actually crucial for naming.

OBJECTIVE

We aimed to identify nodes and pathways implicated in naming in healthy older adults and test the impact of lesions to the connectome on naming ability.

METHODS

We first identified 24 cortical nodes activated by a naming task and reconstructed anatomical connections between these nodes using probabilistic tractography in healthy adults. We then used structural scans and fractional anisotropy (FA) maps in 45 patients with left hemisphere stroke to assess the relationships of node and pathway integrity to naming, phonology, and nonverbal semantic ability.

RESULTS

We found that mean FA values in 13 left hemisphere white matter tracts within the dorsal and ventral streams and 1 interhemispheric tract significantly related to naming scores after controlling for lesion size and demographic factors. In contrast, lesion loads in the cortical nodes were not related to naming performance after controlling for the same variables. Among the identified tracts, the integrity of 4 left hemisphere ventral stream tracts related to nonverbal semantic processing and 1 left hemisphere dorsal stream tract related to phonological processing.

CONCLUSIONS

Our findings reveal white matter structures vital for naming and its subprocesses. These findings demonstrate the value of multimodal methods that integrate functional imaging, structural connectivity, and lesion data to understand relationships between brain networks and behavior.

摘要

背景

在功能磁共振成像研究中,图片命名涉及顶叶、额叶和颞叶皮层中广泛分布的脑区。然而,目前尚不清楚这些被激活的区域,以及它们之间的白质通路,是否对命名至关重要。

目的

我们旨在确定在健康老年人中参与命名的节点和通路,并测试连接组中病变对命名能力的影响。

方法

我们首先在健康成年人中使用概率追踪法确定了 24 个由命名任务激活的皮质节点,并重建了这些节点之间的解剖连接。然后,我们使用结构扫描和 45 例左侧大脑半球卒中患者的各向异性分数 (FA) 图,评估节点和通路完整性与命名、语音和非语言语义能力的关系。

结果

我们发现,在控制病变大小和人口统计学因素后,13 条左侧大脑半球背侧和腹侧流以及 1 条半球间白质束内的平均 FA 值与命名分数显著相关。相比之下,在控制相同变量后,皮质节点的病变负荷与命名表现无关。在所确定的束中,4 条左侧大脑半球腹侧流束与非语言语义处理有关,1 条左侧大脑半球背侧流束与语音处理有关。

结论

我们的发现揭示了对命名及其子过程至关重要的白质结构。这些发现表明,整合功能成像、结构连接和病变数据的多模态方法对于理解大脑网络与行为之间的关系具有重要价值。

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