Institute of Electronics Engineering, National Tsing Hua University (NTHU), No 101, Sec. 2, Kuang-Fu Rd, Hsinchu 30013, Taiwan.
J Neural Eng. 2011 Jun;8(3):034001. doi: 10.1088/1741-2560/8/3/034001. Epub 2011 Apr 8.
A variety of microelectrode arrays (MEAs) has been developed for monitoring intra-cortical neural activity at a high spatio-temporal resolution, opening a promising future for brain research and neural prostheses. However, most MEAs are based on metal electrodes on rigid substrates, and the intra-cortical implantation normally causes neural damage and immune responses that impede long-term recordings. This communication presents a flexible, carbon-nanotube MEA (CMEA) with integrated circuitry. The flexibility allows the electrodes to fit on the irregular surface of the brain to record electrocorticograms in a less invasive way. Carbon nanotubes (CNTs) further improve both the electrode impedance and the charge-transfer capacity by more than six times. Moreover, the CNTs are grown on the polyimide substrate directly to improve the adhesion to the substrate. With the integrated recording circuitry, the flexible CMEA is proved capable of recording the neural activity of crayfish in vitro, as well as the electrocorticogram of a rat cortex in vivo, with an improved signal-to-noise ratio. Therefore, the proposed CMEA can be employed as a less-invasive, biocompatible and reliable neuro-electronic interface for long-term usage.
已经开发出各种微电极阵列 (MEA) 来以高时空分辨率监测皮质内神经活动,为大脑研究和神经假体开辟了广阔的前景。然而,大多数 MEA 基于刚性基底上的金属电极,而皮质内植入通常会引起神经损伤和免疫反应,从而阻碍长期记录。本通讯提出了一种具有集成电路的柔性碳纳米管 MEA (CMEA)。其柔性允许电极贴合在大脑的不规则表面上,以以侵入性更小的方式记录脑电图。碳纳米管 (CNT) 进一步将电极阻抗和电荷转移能力提高了六倍以上。此外,CNT 直接在聚酰亚胺基底上生长,以提高与基底的附着力。通过集成的记录电路,柔性 CMEA 被证明能够体外记录螯虾的神经活动,以及体内大鼠皮层的脑电图,具有改善的信噪比。因此,所提出的 CMEA 可用作长期使用的微创、生物相容和可靠的神经电子接口。