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Functional connectivity during epileptogenesis

机译:癫痫发生过程中的功能性连接

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Epilepsy is one of the most serious neurological diseases, affecting 1% of the world population. The disease is characterized by recurrent and spontaneous seizures due to the abnormal excessive activity of the neurons in the brain. The transition from a normal brain to a brain generating seizures, a process called epileptogenesis, is still unclear. For this reason, we explored the dynamics of the brain activity before and after a lesion with kainic acid in rats. This lesion causes rats to develop epilepsy and present spontaneous seizures within the next few months. More specifically, we explored the functional connectivity of the brain network before, one day and seven days after the lesion. Four different methods of functional connectivity were compared, two proposed and two classical methods. The proposed methods performed better than others. We observed a decrease of connectivity of the entorhinal cortex, a connecting bridge between the hippocampus and the neocortex, after the lesion. An increase of connectivity within the hippocampus and neocortex was also observed. We confirmed that the brain networks change during epileptogenesis, making the brain prone to present epileptic seizures.
机译:癫痫是最严重的神经疾病之一,影响了世界1%的人口。由于脑中神经元的异常过量活性,该疾病的特征在于复发性和自发性癫痫发作。从正常大脑转变为脑产生癫痫发作,一种名为癫痫发生的过程,仍然不清楚。因此,我们探讨了在大鼠中与KainiC酸病变之前和之后的大脑活动的动态。这种病变导致大鼠在未来几个月内发育癫痫并出现自发癫痫发作。更具体地说,我们之前探讨了大脑网络的功能连接,一天和病变后七天。比较了四种不同的功能连接方法,两个提出和两种古典方法。所提出的方法比其他方法更好。我们观察到在病变之后,在海马和Neocortex之间的连接桥的连接桥的连通性降低。还观察到海马内的连接性和Neocortex的增加。我们确认大脑网络在癫痫发生过程中发生变化,使大脑易患癫痫发作。

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