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首页> 外文期刊>Acta biomaterialia >Conducting polymers on hydrogel-coated neural electrode provide sensitive neural recordings in auditory cortex.
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Conducting polymers on hydrogel-coated neural electrode provide sensitive neural recordings in auditory cortex.

机译:在水凝胶涂覆的神经电极上导电聚合物在听觉皮层中提供敏感的神经记录。

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摘要

Recently, a significant amount of effort has been dedicated to understanding factors that influence the functionality of bio-electronic sensors and to development of novel coating technologies for modifying biosensor surfaces. Due to its well-known biocompatibility, alginate hydrogel (HG) has been used as a coating material on neural electrodes for promoting intimate cellular integration, providing a scaffold for local drug delivery, and creating a mechanical buffer between hard electrodes and the soft tissues of the central nervous system. However, neural signal recordings using HG-coated electrodes in animal models are still poorly evaluated. Here, we investigated the effect of the proximity of source neurons around the electrode sites using HG coatings with various thicknesses deposited on microfabricated electrodes, implanted in auditory cortex of guinea pigs. We also evaluated the role of the conducting polymer poly(3,4-ethylenedioxythiophene) (PEDOT) in improving the recording functionality of the HG-coated neural electrodes. A significant loss in recording functionality was observed with thicker HG coatings, as determined by the number of clearly detectable units (30% with 80 microm thick coatings) and average signal-to-noise ratios (3.91 with 80 microm thick coatings). However, deposition of the conducting polymer PEDOT on the electrode sites restored the lost functionality of the electrodes caused by the HG coatings (30 microm). These conducting polymer/HG coatings have the potential to improve long-term performance of the neural electrodes not only by improving the electrode biocompatibility but also by facilitating more efficient signal transmission.
机译:最近,一直努力致力于了解影响生物电子传感器功能以及开发用于改性生物传感器表面的新型涂层技术的因素。由于其众所周知的生物相容性,藻酸盐水凝胶(Hg)已被用作神经电极上的涂料,用于促进亲密的细胞集成,为局部药物递送提供支架,并在硬电极和软组织之间产生机械缓冲器中枢神经系统。然而,使用动物模型中使用HG涂覆电极的神经信号记录仍然很差。在这里,我们研究了使用HG涂层在电极位点周围的源神经元邻近具有各种厚度的微生物涂层的疗效,植入豚鼠的听觉皮质。我们还评估了导电聚合物聚(3,4-亚乙二氧基噻吩)(PEDOT)改善HG涂覆的神经电极的记录功能的作用。用较厚的HG涂层观察到记录功能的显着损失,如清晰可检测单元的数量(30%,80微米厚涂层)和平均信噪比(3.91,带有80微米厚涂层的3.91)。然而,在电极部位上的导电聚合物踏板沉积恢复由HG涂层(30微米)引起的电极的丢失功能。这些导电聚合物/ Hg涂层具有可提高神经电极的长期性能,而不仅通过改善电极生物相容性,而且通过促进更有效的信号传输。

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