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Transparent Flexible Low Noise Graphene Electrodes for Simultaneous Electrophysiology and Neuroimaging

机译:透明柔性低噪声的石墨烯电极可同时进行电生理学和神经成像

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摘要

Calcium imaging is a versatile experimental approach capable of resolving single neurons with single-cell spatial resolution in the brain. Electrophysiological recordings provide high temporal, but limited spatial resolution, due to the geometrical inaccessibility of the brain. An approach that integrates the advantages of both techniques could provide new insights into functions of neural circuits. Here, we report a transparent, flexible neural electrode technology based on graphene, which enables simultaneous optical imaging and electrophysiological recording. We demonstrate that hippocampal slices can be imaged through transparent graphene electrodes by both confocal and two-photon microscopy without causing any light-induced artifacts in the electrical recordings. Graphene electrodes record high frequency bursting activity and slow synaptic potentials that are hard to resolve by multi-cellular calcium imaging. This transparent electrode technology may pave the way for high spatio-temporal resolution electrooptic mapping of the dynamic neuronal activity.
机译:钙成像是一种通用的实验方法,能够解析大脑中具有单细胞空间分辨率的单个神经元。由于大脑的几何学上难以接近,电生理记录提供了高的时间性,但空间分辨率有限。融合了这两种技术的优点的方法可以提供对神经回路功能的新见解。在这里,我们报告了一种基于石墨烯的透明,灵活的神经电极技术,该技术可以同时进行光学成像和电生理记录。我们证明,可以通过透明石墨烯电极通过共焦和双光子显微镜对海马切片进行成像,而不会在电记录中引起任何光诱导的伪像。石墨烯电极记录了高频率的爆发活性和缓慢的突触电位,而这很难通过多细胞钙成像解决。这种透明电极技术可以为动态神经元活动的高时空分辨率电光测绘铺平道路。

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