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Concurrent Recording of Co-localized Electroencephalography and Local Field Potential in Rodent

机译:啮齿动物共定位脑电图和局部场电位的同时记录

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摘要

Although electroencephalography (EEG) is widely used as a non-invasive technique for recording neural activities of the brain, our understanding of the neurogenesis of EEG is still very limited. Local field potentials (LFPs) recorded via a multi-laminar microelectrode can provide a more detailed account of simultaneous neural activity across different cortical layers in the neocortex, but the technique is invasive. Combining EEG and LFP measurements in a pre-clinical model can greatly enhance understanding of the neural mechanisms involved in the generation of EEG signals, and facilitate the derivation of a more realistic and biologically accurate mathematical model of EEG. A simple procedure for acquiring concurrent and co-localized EEG and multi-laminar LFP signals in the anesthetized rodent is presented here. We also investigated whether EEG signals were significantly affected by a burr hole drilled in the skull for the insertion of a microelectrode. Our results suggest that the burr hole has a negligible impact on EEG recordings.
机译:尽管脑电图(EEG)被广泛用作记录大脑神经活动的非侵入性技术,但我们对EEG神经发生的理解仍然非常有限。通过多层微电极记录的局部场电位(LFP)可以提供新皮质中不同皮质层同时神经活动的更详细说明,但该技术具有侵入性。在临床前模型中将EEG和LFP测量结合起来可以极大地增强对EEG信号产生所涉及的神经机制的理解,并有助于推导更现实和生物学上准确的EEG数学模型。本文介绍了一种在麻醉的啮齿动物中获取并发和共定位的EEG和多层LFP信号的简单程序。我们还研究了脑电图信号是否受到颅骨上钻一个用于插入微电极的钻孔的影响。我们的结果表明,毛刺孔对EEG记录的影响可忽略不计。

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