首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >White matter microstructure of the cingulum and cerebellar peduncle is related to sustained attention and working memory: a diffusion tensor imaging study.
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White matter microstructure of the cingulum and cerebellar peduncle is related to sustained attention and working memory: a diffusion tensor imaging study.

机译:扣带和小脑梗的白质微观结构与持续注意力和工作记忆有关:扩散张量成像研究。

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摘要

The non-invasive imaging technique of diffusion tensor imaging (DTI) has been used to investigate the microstructural properties of white matter (WM). The present study investigated whether individual differences in the WM structure of normal subjects as measured by fractional anisotropy (FA) values correlate with cognitive performance in terms of sustained attention and working memory. Subjects underwent DTI and performed the Continuous Performance Test (CPT) and N-back task. FA values throughout the brain were correlated with behavioral performance on a voxel-by-voxel basis to investigate relationships between WM microstructure and cognitive function. The discriminability index of CPT correlated positively with FA of the right cingulum. Accuracy of the 2-back task correlated positively with FA in bilateral cerebellar peduncles. WM microstructure of the right cingulum and bilateral cerebellar peduncles appears related to cognitive function such as sustained attention and working memory in the human brain.
机译:弥散张量成像(DTI)的非侵入性成像技术已被用于研究白质(WM)的微观结构特性。本研究调查了正常受试者的WM结构的个体差异(通过分数各向异性(FA)值测量)是否与持续关注和工作记忆方面的认知表现相关。受试者进行了DTI并执行了持续性能测试(CPT)和N背任务。整个大脑中的FA值与每个体素的行为表现相关,以研究WM微观结构与认知功能之间的关系。 CPT的可分辨指数与右扣带的FA呈正相关。双侧小脑梗的2-back任务的准确性与FA呈正相关。右扣带和双侧小脑梗的WM微观结构似乎与认知功能有关,例如人脑的持续注意力和工作记忆。

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