Neural Excitations by the Current Injected Through the Carbon Nanotube Surface of an Intracortical Electrode in Vivo

R. Ota, Shohei Suga, Y. Hayashida
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Abstract

We fabricated carbon-nanotube-coated neural electrodes that can be inserted into the cerebral cortex in vivo. Using the fast voltage-sensitive dye imaging technique, we visualized spatio-temporal neural responses in the mouse cortex to microstimulation delivered through these electrodes. The experimental results showed the usability of the electrodes for inducing spatially confined neural excitations in vivo. This type of stimulation electrode is expected to have higher charge conductivity and cell membrane affinity at the electrode-tissue interface as the coating layer of the carbon nanotube becomes thicker while maintaining the geometric cross-sectional area. This might offer an advantage over the conventional metal-surface electrode.
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体内皮层内电极碳纳米管表面注入的电流对神经系统的刺激作用
我们制造了碳纳米管包覆的神经电极,可以在体内插入大脑皮层。使用快速电压敏感染料成像技术,我们可视化了小鼠皮层对通过这些电极传递的微刺激的时空神经反应。实验结果表明,电极在体内诱导空间受限的神经兴奋是可行的。随着碳纳米管的涂层变得更厚,同时保持几何截面积,这种类型的刺激电极有望在电极-组织界面具有更高的电荷导电性和细胞膜亲和力。这可能比传统的金属表面电极有优势。
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