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Simultaneous Recording of Brain Activity and Functional Connectivity in the Mouse Brain

机译:同时记录小鼠脑中的脑活动和功能性连接

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Combining of two measurement system of different scale in the mouse brain has been challenging issue due to the small size of the mouse brain. We present a novel approach to record brain activity and connectivity simultaneously by using intracranial electrode and flexible multichannel film electrode. 40 channel ultra-thin nanofabricated microelectrode covering the mouse skull was applied in this study. The null space in the microarray was cut off so that the secondary sensor or stimulator can approach to the brain. Hereby, we performed a simultaneous recording of local field potential and multichannel EEG recording in a freely moving mouse under pharmacologically driven absence seizure. A brain activity in the thalamus was depicted together with cortical EEG map. The connectivity levels between different cortical sites or between thalamus and cortical site were measured during seizure. The time lag map of cortical EEG with respect to the thalamus represents the propagation delay of the seizure.
机译:由于小鼠脑大小的尺寸小,小鼠大脑中不同规模的两种测量系统的组合是挑战性问题。我们通过使用颅内电极和柔性多通道薄膜电极同时记录大脑活动和连接的新方法。在本研究中应用了覆盖小鼠颅骨的40通道超薄纳米制造微电极。切断微阵列中的空空格,使辅助传感器或刺激器可以接近大脑。在此,我们在药理学驱动的缺陷癫痫发作下在自由移动的鼠标中同时记录局部场电位和多通道EEG记录。丘脑中的脑活动与皮质脑电图映射一起描绘。在癫痫发作期间测量不同皮质网站或丘脑和皮质部位之间的连接水平。皮质脑电图相对于丘脑的时间滞后地图代表了癫痫发作的传播延迟。

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