Nanoscience Centre, University of Cambridge, Cambridge CB3 0FF, United Kingdom.
Lab Chip. 2012 Jul 21;12(14):2540-51. doi: 10.1039/c2lc21277c. Epub 2012 May 9.
In this paper we present a compliant neural interface designed to record bladder afferent activity. We developed the implant's microfabrication process using multiple layers of silicone rubber and thin metal so that a gold microelectrode array is embedded within four parallel polydimethylsiloxane (PDMS) microchannels (5 mm long, 100 μm wide, 100 μm deep). Electrode impedance at 1 kHz was optimized using a reactive ion etching (RIE) step, which increased the porosity of the electrode surface. The electrodes did not deteriorate after a 3 month immersion in phosphate buffered saline (PBS) at 37 °C. Due to the unique microscopic topography of the metal film on PDMS, the electrodes are extremely compliant and can withstand handling during implantation (twisting and bending) without electrical failure. The device was transplanted acutely to anaesthetized rats, and strands of the dorsal branch of roots L6 and S1 were surgically teased and inserted in three microchannels under saline immersion to allow for simultaneous in vivo recordings in an acute setting. We utilized a tripole electrode configuration to maintain background noise low and improve the signal to noise ratio. The device could distinguish two types of afferent nerve activity related to increasing bladder filling and contraction. To our knowledge, this is the first report of multichannel recordings of bladder afferent activity.
本文介绍了一种顺应性神经接口,旨在记录膀胱传入活动。我们使用多层硅橡胶和薄金属开发了植入物的微制造工艺,使金微电极阵列嵌入在四个平行的聚二甲基硅氧烷 (PDMS) 微通道中(长 5 毫米,宽 100 微米,深 100 微米)。通过反应离子刻蚀 (RIE) 步骤优化了电极的阻抗,这增加了电极表面的孔隙率。电极在 37°C 的磷酸盐缓冲盐水 (PBS) 中浸泡 3 个月后没有恶化。由于 PDMS 上金属膜的独特微观形貌,电极具有极高的顺应性,可以承受植入过程中的处理(扭曲和弯曲)而不会发生电气故障。该设备被急性移植到麻醉大鼠中,L6 和 S1 神经根的背侧分支被手术分离并插入三个微通道中,在盐水浸泡下允许在急性环境下进行同时体内记录。我们利用三极电极配置来保持背景噪声低并提高信噪比。该设备可以区分与膀胱充盈和收缩相关的两种传入神经活动类型。据我们所知,这是首次报道多通道记录膀胱传入活动。