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Resting state functional network disruptions in a kainic acid model of temporal lobe epilepsy

机译:颞叶癫痫的凯南酸模型中的休息状态功能网络中断。

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摘要

We studied the graph topological properties of brain networks derived from resting-state functional magnetic resonance imaging in a kainic acid induced model of temporal lobe epilepsy (TLE) in rats. Functional connectivity was determined by temporal correlation of the resting-state Blood Oxygen Level Dependent (BOLD) signals between two brain regions during 1.5% and 2% isoflurane, and analyzed as networks in epileptic and control rats. Graph theoretical analysis revealed a significant increase in functional connectivity between brain areas in epileptic than control rats, and the connected brain areas could be categorized as a limbic network and a default mode network (DMN). The limbic network includes the hippocampus, amygdala, piriform cortex, nucleus accumbens, and mediodorsal thalamus, whereas DMN involves the medial prefrontal cortex, anterior and posterior cingulate cortex, auditory and temporal association cortex, and posterior parietal cortex. The TLE model manifested a higher clustering coefficient, increased global and local efficiency, and increased small-worldness as compared to controls, despite having a similar characteristic path length. These results suggest extensive disruptions in the functional brain networks, which may be the basis of altered cognitive, emotional and psychiatric symptoms in TLE.
机译:我们研究了海藻酸诱导的大鼠颞叶癫痫(TLE)模型中源自静止状态功能磁共振成像的大脑网络的图拓扑特性。功能连接性是通过在1.5%和2%的异氟烷​​中两个大脑区域之间的静止状态血氧水平依赖性(BOLD)信号之间的时间相关性来确定的,并作为癫痫和对照大鼠的网络进行分析。图论分析表明,癫痫病患者的大脑区域之间的功能连通性明显高于对照组,并且相连的大脑区域可分为边缘网络和默认模式网络(DMN)。边缘网络包括海马体,杏仁核,梨状皮层,伏隔核和腹中丘脑,而DMN涉及内侧前额叶皮层,前扣带和后扣带皮层,听觉和颞叶联想皮层以及后顶叶皮层。尽管具有相似的特征路径长度,但与对照相比,TLE模型表现出更高的聚类系数,更高的全局和局部效率以及更高的小世界性。这些结果表明功能性脑网络的广泛破坏,这可能是TLE认知,情感和精神症状改变的基础。

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