首页> 外文会议>2012 19th Iranian Conference of Biomedical Engineering >Impaired resting state networks in temporal lobe epilepsy: A resting state fMRI study
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Impaired resting state networks in temporal lobe epilepsy: A resting state fMRI study

机译:颞叶癫痫的静息状态网络受损:静息状态fMRI研究

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Temporal lobe epilepsy (TLE) is the most common type of human refractory epilepsy and can cause widespread impairments in brain functionality. Previous studies show functional and structural abnormalities in different regions of TLE patients' brain in comparison with normal subjects. However, limited studies have been done on connectivity abnormalities of resting state networks (RSN) in TLE patients and most of them studied default mode network (DMN) only. In this paper, nine independent spatial maps of the brain were identified by applying independent component analysis (ICA) on functional magnetic resonance images (fMRI) of the subjects. These maps were classified into four resting state networks: visual network, auditory network, default mode network, and attention network (including right and left fronto-parietal networks and core network). Functional connectivity between time courses of the nine components were computed and then compared between TLE patients and healthy subjects. Results show that there are significant between-group differences in functional connectivity among different brain networks including decrease in functional connections of visual cortex with two other networks, DMN and attention network, and decrease in functional connectivity between DMN and left fronto-parietal network. An increase in functional connectivity between DMN and core network and also between right fronto-parietal network and auditory network is observed.
机译:颞叶癫痫(TLE)是人类难治性癫痫的最常见类型,可导致大脑功能广泛受损。先前的研究表明,与正常受试者相比,TLE患者大脑不同区域的功能和结构异常。但是,关于TLE患者的休息状态网络(RSN)的连接异常的研究很少,其中大多数仅研究默认模式网络(DMN)。在本文中,通过在受试者的功能磁共振图像(fMRI)上应用独立成分分析(ICA)识别了九个独立的大脑空间图。这些地图分为四个静止状态网络:视觉网络,听觉网络,默认模式网络和注意力网络(包括左右额顶叶网络和核心网络)。计算了这九个组成部分的时程之间的功能连通性,然后在TLE患者和健康受试者之间进行比较。结果表明,不同大脑网络之间的功能连通性存在显着的组间差异,包括视觉皮层与DMN和注意力网络这两个其他网络之间的功能连通性下降,以及DMN与左额顶叶网络之间的功能连通性下降。观察到DMN与核心网络之间以及右侧额顶网络与听觉网络之间的功能连接性增加。

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