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Altered Rolandic Gamma-Band Activation Associated with Motor Impairment and Ictal Network Desynchronization in Childhood Epilepsy

机译:与儿童运动障碍和Ictal网络失步相关的Rolandic伽玛波段激活在儿童癫痫发作中。

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摘要

Epilepsy is associated with an abnormal expression of neural oscillations and their synchronization across brain regions. Oscillatory brain activation and synchronization also play an important role in cognition, perception and motor control. Childhood epilepsy is associated with a variety of cognitive and motor deficits, but the relationship between altered functional brain responses in various frequency ranges and functional impairment in these children remains poorly understood. We investigated functional magnetoencephalographic (MEG) responses from motor cortex in multiple functionally relevant frequency bands following median nerve stimulation in twelve children with epilepsy, including four children with motor impairments. We demonstrated that children with motor impairments exhibit an excessive gamma-band response from Rolandic cortex, and that the magnitude of this Rolandic gamma response is negatively associated with motor function. Abnormal responses from motor cortex were also associated with ictal desynchronization of oscillations within Rolandic cortex measured using intracranial EEG (iEEG). These results provide the evidence that ictal disruption of motor networks is associated with an altered functional response from motor cortex, which is in turn associated with motor impairment.
机译:癫痫与神经振荡的异常表达及其在大脑区域的同步有关。振荡性大脑的激活和同步在认知,知觉和运动控制中也起着重要的作用。儿童癫痫病与多种认知功能障碍和运动功能障碍有关,但这些儿童在各种频率范围内功能性脑反应改变与功能障碍之间的关系仍然知之甚少。我们调查了十二个癫痫患儿(其中包括四个运动障碍患儿)的正中神经刺激后,运动皮质在多个功能相关频段的运动皮层脑磁图(MEG)反应。我们证明患有运动障碍的儿童表现出来自罗兰迪皮层的过度的伽马带反应,并且这种罗兰迪克伽马反应的幅度与运动功能负相关。运动皮层的异常反应还与使用颅内EEG(iEEG)测量的Rolandic皮层的振荡的振荡不同步有关。这些结果提供了证据,即运动网络的短暂破坏与运动皮层功能反应的改变有关,而运动皮层的功能反应又与运动障碍有关。

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