微电极
材料科学
碳纳米管
电极
生物医学工程
纳米技术
神经假体
小型化
纤维
神经假体
脑植入物
神经科学
复合材料
医学
化学
物理化学
生物
作者
Flavia Vitale,Samantha R. Summerson,Behnaam Aazhang,Caleb Kemere,Matteo Pasquali
出处
期刊:ACS Nano
[American Chemical Society]
日期:2015-03-31
卷期号:9 (4): 4465-4474
被引量:242
标识
DOI:10.1021/acsnano.5b01060
摘要
The development of microelectrodes capable of safely stimulating and recording neural activity is a critical step in the design of many prosthetic devices, brain-machine interfaces, and therapies for neurologic or nervous-system-mediated disorders. Metal electrodes are inadequate prospects for the miniaturization needed to attain neuronal-scale stimulation and recording because of their poor electrochemical properties, high stiffness, and propensity to fail due to bending fatigue. Here we demonstrate neural recording and stimulation using carbon nanotube (CNT) fiber electrodes. In vitro characterization shows that the tissue contact impedance of CNT fibers is remarkably lower than that of state-of-the-art metal electrodes, making them suitable for recording single-neuron activity without additional surface treatments. In vivo chronic studies in parkinsonian rodents show that CNT fiber microelectrodes stimulate neurons as effectively as metal electrodes with 10 times larger surface area, while eliciting a significantly reduced inflammatory response. The same CNT fiber microelectrodes can record neural activity for weeks, paving the way for the development of novel multifunctional and dynamic neural interfaces with long-term stability.
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