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Functional mapping of language networks in the normal brain using a word-association task

机译:使用单词联想任务对正常大脑中的语言网络进行功能映射

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Background: Language functions are known to be affected in diverse neurological conditions, including ischemic stroke, traumatic brain injury, and brain tumors. Because language networks are extensive, interpretation of functional data depends on the task completed during evaluation. Aim: The aim was to map the hemodynamic consequences of word association using functional magnetic resonance imaging (fMRI) in normal human subjects. Materials and Methods: Ten healthy subjects underwent fMRI scanning with a postlexical access semantic association task vs lexical processing task. The fMRI protocol involved a T2*-weighted gradient-echo echo-planar imaging (GE-EPI) sequence (TR 4523 ms, TE 64 ms, flip angle 90°) with alternate baseline and activation blocks. A total of 78 scans were taken (interscan interval = 3 s) with a total imaging time of 587 s. Functional data were processed in Statistical Parametric Mapping software (SPM2) with 8-mm Gaussian kernel by convolving the blood oxygenation level-dependent (BOLD) signal with an hemodynamic response function estimated by general linear method to generate SPM{ t } and SPM{ F } maps. Results: Single subject analysis of the functional data (FWE-corrected, P ≤0.001) revealed extensive activation in the frontal lobes, with overlaps among middle frontal gyrus (MFG), superior, and inferior frontal gyri. BOLD activity was also found in the medial frontal gyrus, middle occipital gyrus (MOG), anterior fusiform gyrus, superior and inferior parietal lobules, and to a smaller extent, the thalamus and right anterior cerebellum. Group analysis (FWE-corrected, P ≤0.001) revealed neural recruitment of bilateral lingual gyri, left MFG, bilateral MOG, left superior occipital gyrus, left fusiform gyrus, bilateral thalami, and right cerebellar areas. Conclusions: Group data analysis revealed a cerebellar–occipital–fusiform–thalamic network centered around bilateral lingual gyri for word association, thereby indicating how these areas facilitate language comprehension by activating a semantic association network of words processed postlexical access. This finding is important when assessing the extent of cognitive damage and/or recovery and can be used for presurgical planning after optimization.
机译:背景:已知语言功能会在多种神经系统疾病中受到影响,包括缺血性中风,脑外伤和脑肿瘤。由于语言网络广泛,对功能数据的解释取决于评估过程中完成的任务。目的:目的是通过功能磁共振成像(fMRI)绘制正常人受试者单词联想的血液动力学后果。材料和方法:十名健康受试者接受了词法访问语义关联任务与词法处理任务的功能磁共振成像扫描。 fMRI方案涉及T2 *加权梯度回波回波平面成像(GE-EPI)序列(TR 4523毫秒,TE 64毫秒,翻转角90°),并带有交替的基线和激活块。总共进行了78次扫描(扫描间隔= 3 s),总成像时间为587 s。在具有8mm高斯核的统计参数映射软件(SPM2)中,通过将血液氧合水平依赖性(BOLD)信号与一般线性方法估计的血液动力学响应函数进行卷积,生成SPM {t}和SPM {F }地图。结果:功能数据的单项分析(经FWE校正,P≤0.001)显示额叶广泛激活,中额回(MFG),额上和下额回重叠。在内侧额额回,枕中回(MOG),梭形前回,顶叶和顶叶下小叶以及丘脑和右前小脑中也发现了BOLD活性。小组分析(经FWE校正,P≤0.001)显示双侧舌回,左MFG,双侧MOG,左枕上回,左梭状回,双侧丘脑和小脑右侧的神经募集。结论:团体数据分析显示,小脑-枕骨-梭形-丘脑网络以双侧舌状回旋为中心,用于词联想,从而表明这些区域如何通过激活词加工后词法访问的语义联想网络来促进语言理解。当评估认知损害和/或恢复的程度时,这一发现很重要,并可用于优化后的术前计划。

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