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Three-Dimensional Carbon Nanotube Electrodes for Extracellular Recording of Cardiac Myocytes

机译:三维碳纳米管电极用于心肌细胞的细胞外记录

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Low impedance at the interface between tissue and conducting electrodes is of utmost importance for the electrical recording or stimulation of heart and brain tissue. A common way to improve the cell–metal interface and thus the signal-to-noise ratio of recordings, as well as the charge transfer for stimulation applications, is to increase the electrochemically active electrode surface area. In this paper, we propose a method to decrease the impedance of microelectrodes by the introduction of carbon nanotubes (CNTs), offering an extremely rough surface. In a multistage process, an array of multiple microelectrodes covered with high quality, tightly bound CNTs was realized. It is shown by impedance spectroscopy and cardiac myocyte recordings that the transducer properties of the carbon nanotube electrodes are superior to conventional gold and titanium nitride electrodes. These findings will be favorable for any kind of implantable heart electrodes and electrophysiology in cardiac myocyte cultures.
机译:对于心脏和大脑组织的电记录或刺激,组织与导电电极之间的界面处的低阻抗至关重要。改善电池-金属界面并因此改善记录的信噪比以及刺激应用中电荷转移的一种常见方法是增加电化学活性电极的表面积。在本文中,我们提出了一种通过引入碳纳米管(CNT)来降低微电极阻抗的方法,该方法可提供极为粗糙的表面。在多阶段过程中,实现了多个微电极的阵列,这些电极覆盖有高质量,紧密结合的CNT。通过阻抗光谱法和心肌细胞记录表明,碳纳米管电极的换能器性能优于常规的金和氮化钛电极。这些发现对于心脏心肌细胞培养中的任何种类的可植入心脏电极和电生理学都是有利的。

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