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Flexible and stretchable micro-electrodes for in vitro and in vivo neural interfaces

机译:用于体外和体内神经界面的柔性和可拉伸微电极

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Microelectrode arrays (MEAs) are designed to monitor and/or stimulate extracellularly neuronal activity. However, the biomechanical and structural mismatch between current MEAs and neural tissues remains a challenge for neural interfaces. This article describes a material strategy to prepare neural electrodes with improved mechanical compliance that relies on thin metal film electrodes embedded in polymeric substrates. The electrode impedance of micro-electrodes on polymer is comparable to that of MEA on glass substrates. Furthermore, MEAs on plastic can be flexed and rolled offering improved structural interface with brain and nerves in vivo. MEAs on elastomer can be stretched reversibly and provide in vitro unique platforms to simultaneously investigate the electrophysiological of neural cells and tissues to mechanical stimulation. Adding mechanical compliance to MEAs is a promising vehicle for robust and reliable neural interfaces.
机译:微电极阵列(MEA)被设计为监视和/或刺激细胞外神经元活动。然而,当前的MEA与神经组织之间的生物力学和结构失配仍然是神经接口面临的挑战。本文介绍了一种材料策略,以制备具有改善的机械柔韧性的神经电极,该神经电极依赖于嵌入聚合物基材中的金属薄膜电极。聚合物上的微电极的电极阻抗与玻璃基板上的MEA的电极阻抗相当。此外,塑料上的MEA可以弯曲和卷起,从而改善了体内与大脑和神经的结构界面。弹性体上的MEA可以可逆拉伸,并提供体外独特的平台,以同时研究神经细胞和组织对机械刺激的电生理。为MEA增加机械顺应性是实现强大而可靠的神经接口的有前途的手段。

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