Choi Jee Hyun, Koch Klaus Peter, Poppendieck Wigand, Lee Mina, Doerge Thomas, Shin Hee Sup
Korea Institute of Science & Technology, Seoul 136-791 Republic of Korea and Department of Neuroscience, University of Science & Technology, Daejon 305-333 Korea.
Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:1600-3. doi: 10.1109/IEMBS.2009.5333233.
Electroencephalography (EEG) of the mouse brain offers the advantage to monitor brain states in freely moving conditions under genetic or molecular manipulation. We present a novel, flexible, and biocompatible microfabricated electrode based on polyimide to record a multi-channel EEG from a mouse. Our microelectrode has 32 recording electrodes, including two ground electrodes. The connectors for the signal transmission are carefully affixed to the microelectrode. The overall weight of the microelectrode does not exceed 150 mg, including connectors. The implantation of the microelectrodes does not require invasive surgery and the mouse can be easily discharged from the wires when it is not being recorded. Simultaneous measurements with the microelectrode and a conventional screw electrode show that the microelectrode successfully collects the broad band EEG signals from the skull.
小鼠脑电图(EEG)具有在基因或分子操作下监测自由活动状态下脑状态的优势。我们展示了一种基于聚酰亚胺的新型、灵活且生物相容的微制造电极,用于记录小鼠的多通道脑电图。我们的微电极有32个记录电极,包括两个接地电极。用于信号传输的连接器被小心地固定在微电极上。微电极的总重量(包括连接器)不超过150毫克。微电极的植入不需要侵入性手术,并且在不进行记录时,小鼠可以很容易地从电线中解脱出来。微电极与传统螺旋电极的同步测量表明,微电极成功地从颅骨收集了宽带脑电信号。