Architecture, Fabrication, and Properties of Stretchable Micro-Electrode Arrays

C. Tsay, S. Lacour, S. Wagner, B. Morrison
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引用次数: 17

Abstract

Essential components of a stretchable microelectrode array (SMEA) to record from biological tissue include: a compliant and elastic substrate, stretchable conductors forming active electrodes and traces, and an electrical insulation layer. The materials and architecture of these SMEA components must be biocompatible, resistant to electrolytic environments, and electrically functional during and after mechanical stretching. While rigid MEA systems exist, many applications, such as retinal implants and sensitive skin, need soft, conformable, and stretchable electronic devices. This work focuses on the fabrication process, electromechanical characterization, and biocompatibility of stretchable micro-electrodes on silicone membranes. We deposit and pattern thin gold films on elastomeric silicone substrates, encapsulate them with an insulating photopatternable silicone layer, and show that the electrodes remain electrically conducting during stretch to >50% strain. The SMEA supports growths of organotypic brain slice cultures
可拉伸微电极阵列的结构、制造和性能
用于记录生物组织的可拉伸微电极阵列(sma)的基本组件包括:柔性和弹性衬底,形成有源电极和迹线的可拉伸导体,以及电绝缘层。这些SMEA组件的材料和结构必须具有生物相容性,耐电解环境,并且在机械拉伸期间和之后具有电气功能。虽然存在刚性MEA系统,但许多应用,如视网膜植入物和敏感皮肤,需要柔软,舒适和可拉伸的电子设备。本文主要研究了硅膜上可拉伸微电极的制备工艺、机电特性和生物相容性。我们在弹性硅基板上沉积并绘制薄金薄膜,并用绝缘的可光模压的硅基层封装它们,并表明电极在拉伸到>50%应变时保持导电性。SMEA支持器官型脑切片培养的生长
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