Department of Biomedical Engineering, Duke University, Durham, NC, United States of America.
J Neural Eng. 2022 Apr 13;19(2). doi: 10.1088/1741-2552/ac620d.
The micro-electrode array (MEA) is a cell-culture surface with integrated electrodes used for assays of electrically excitable cells and tissues. MEAs have been a workhorse in the study of neurons and myocytes, owing to the scalability and millisecond temporal resolution of the technology. However, traditional MEAs are opaque, precluding inverted microscope access to modern genetically encoded optical sensors and effectors.. To address this gap, transparent MEAs have been developed. However, for many labs, transparent MEAs remain out of reach due to the cost of commercially available products, and the complexity of custom fabrication. Here, we describe an open-source transparent MEA based on the OpenEphys platform (Siegle2017045003).We demonstrate the performance of this transparent MEA in a multiplexed electrical and optogenetic assay of primary rat hippocampal neurons.This open-source transparent MEA and recording platform is designed to be accessible, requiring minimal microelectrode fabrication or circuit design experience. We include low-noise connectors for seamless integration with the Intan Technologies headstage, and a mechanically stable adaptor conforming to the 24-well plate footprint for compatibility with most inverted microscopes.
微电极阵列(MEA)是一种带有集成电极的细胞培养表面,用于研究可兴奋细胞和组织。由于该技术具有可扩展性和毫秒级时间分辨率,MEA 已成为神经元和心肌细胞研究的主力工具。然而,传统的 MEA 是不透明的,这使得现代遗传编码的光学传感器和效应器无法通过倒置显微镜进行访问。为了解决这一差距,已经开发出了透明 MEA。然而,对于许多实验室来说,由于商业上可用产品的成本以及定制制造的复杂性,透明 MEA 仍然遥不可及。在这里,我们描述了一种基于 OpenEphys 平台(Siegle2017045003)的开源透明 MEA。我们展示了这种透明 MEA 在大鼠海马神经元的多路电生理和光遗传学检测中的性能。这种开源透明 MEA 和记录平台旨在易于使用,只需要最少的微电极制造或电路设计经验。我们包括低噪声连接器,可与 Intan 技术前置放大器无缝集成,并且具有机械稳定的适配器,符合 24 孔板的足迹,与大多数倒置显微镜兼容。