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Graphene-based carbon-layered electrode array technology for neural imaging and optogenetic applications

机译:用于神经成像和光遗传学应用的基于石墨烯的碳层电极阵列技术

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摘要

Neural micro-electrode arrays that are transparent over a broad wavelength spectrum from ultraviolet to infrared could allow for simultaneous electrophysiology and optical imaging, as well as optogenetic modulation of the underlying brain tissue. The long-term biocompatibility and reliability of neural micro-electrodes also require their mechanical flexibility and compliance with soft tissues. Here we present a graphene-based, carbon-layered electrode array (CLEAR) device, which can be implanted on the brain surface in rodents for high-resolution neurophysiological recording. We characterize optical transparency of the device at >90% transmission over the ultraviolet to infrared spectrum and demonstrate its utility through optical interface experiments that use this broad spectrum transparency. These include optogenetic activation of focal cortical areas directly beneath electrodes, in vivo imaging of the cortical vasculature via fluorescence microscopy and 3D optical coherence tomography. This study demonstrates an array of interfacing abilities of the CLEAR device and its utility for neural applications.
机译:在从紫外到红外的宽波长光谱上透明的神经微电极阵列可以实现同时电生理学和光学成像,以及对底层脑组织的光遗传学调制。神经微电极的长期生物相容性和可靠性还需要其机械柔韧性和对软组织的适应性。在这里,我们介绍了一种基于石墨烯的碳层电极阵列(CLEAR)设备,可以将其植入啮齿动物的脑表面以进行高分辨率的神经生理学记录。我们在紫外到红外光谱上以大于90%的透射率来表征设备的光学透明性,并通过使用这种广谱透明性的光学界面实验证明了其实用性。这些包括直接在电极下方的局灶皮层区域的光遗传学激活,通过荧光显微镜和3D光学相干断层扫描对皮质脉管系统进行体内成像。这项研究演示了CLEAR设备的一系列接口功能及其在神经应用中的实用性。

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