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首页> 外文期刊>Biomaterials >Hybrid diamond/ carbon fiber microelectrodes enable multimodal electrical/chemical neural interfacing
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Hybrid diamond/ carbon fiber microelectrodes enable multimodal electrical/chemical neural interfacing

机译:混合金刚石/碳纤维微电极使多峰电气/化学神经连接

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摘要

Implantable medical devices are now in regular use to treat or ameliorate medical conditions, including movement disorders, chronic pain, cardiac arrhythmias, and hearing or vision loss. Aside from offering alternatives to pharmaceuticals, one major advantage of device therapy is the potential to monitor treatment efficacy, disease progression, and perhaps begin to uncover elusive mechanisms of diseases pathology. In an ideal system, neural stimulation, neural recording, and electrochemical sensing would be conducted by the same electrode in the same anatomical region. Carbon fiber (CF) microelectrodes are the appropriate size to achieve this goal and have shown excellent performance, in vivo. Their electrochemical properties, however, are not suitable for neural stimulation and electrochemical sensing. Here, we present a method to deposit high surface area conducting diamond on CF microelectrodes. This unique hybrid microelectrode is capable of recording single-neuron action potentials, delivering effective electrical stimulation pulses, and exhibits excellent electrochemical dopamine detection. Such electrodes are needed for the next generation of miniaturized, closed-loop implants that can self-tune therapies by monitoring both electrophysiological and biochemical biomarkers.
机译:植入医疗设备现在正常用于治疗或改善医疗病症,包括运动障碍,慢性疼痛,心律失常和听力或视力丧失。除了提供药品的替代方案,设备治疗的一个主要优势是监测治疗疗效,疾病进展的可能性,并且可能开始揭示疾病病理的难以捉摸的机制。在理想的系统中,神经刺激,神经记录和电化学传感将由相同的解剖区域中的相同电极进行。碳纤维(CF)微电极是达到这一目标的适当尺寸,并且在体内显示出优异的性能。然而,它们的电化学性质不适合神经刺激和电化学传感。这里,我们提出了一种在CF微电极上沉积在CF微电极上进行金刚石的方法。这种独特的混合微电极能够记录单神经元动作电位,提供有效的电刺激脉冲,并且表现出优异的电化学多巴胺检测。对于下一代小型化的闭环植入物,可以通过监测电生理和生物化学生物标志物来自曲调来进行这种电极。

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