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首页> 外文期刊>Biomedical Engineering Letters >Carbon nanofiber multiplexed array and wireless instantaneous neurotransmitter concentration sensor for simultaneous detection of dissolved oxygen and dopamine
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Carbon nanofiber multiplexed array and wireless instantaneous neurotransmitter concentration sensor for simultaneous detection of dissolved oxygen and dopamine

机译:碳纳米纤维多路复用阵列和无线瞬时神经递质浓度传感器,可同时检测溶解氧和多巴胺

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While the mechanism of Deep Brain Stimulation (DBS) remains poorly understood, previous studies have shown that it evokes release of neurochemicals and induces activation of functional magnetic resonance imaging (fMRI) blood oxygen level-dependent signal in distinct areas of the brain. Therefore, the main purpose of this paper is to demonstrate the capabilities of the Wireless Instantaneous Neurotransmitter Concentration Sensor system (WINCS) in conjunction with a carbon nanofiber (CNF) multiplexed array electrode as a powerful tool for elucidating the mechanism of DBS through the simultaneous detection of multiple bioactivemolecules. Methods: Patterned CNF nanoelectrode arrays were prepared on a 4-inch silicon wafer where each device consists of 3 × 3 electrode pads, 200 μm square, that contain CNFs spaced at 1 μm intervals. The multiplexed carbon nanofiber CNF electrodes were integrated with WINCS to detect mixtures of dopamine (DA) and oxygen (O2) using fast scan cyclic voltammetry (FSCV) in vitro. Results: First, simultaneous detection of O2 at two spatially different locations, 200 um apart, was demonstrated. Second, simultaneous detection of both O2 and DA at two spatially different locations, using two different decoupled waveforms was demonstrated. Third, controlled studies demonstrated that the waveform must be interleaved to avoid electrode crosstalk artifacts in the acquired data. Conclusions: Multiplexed CNF nanoelectrode arrays for electrochemical detection of neurotransmitters show promise for the detection of multiple analytes with the application of time independent decoupled waveforms. Electrochemistry on CNF electrodes may be helpful in elucidating the mechanism of DBS, and may also provide the precision and sensitivity required for future applications in feedback modulated DBS neural control systems.
机译:尽管对深度脑刺激(DBS)的机制仍知之甚少,但先前的研究表明,它会引起神经化学物质的释放并在大脑的不同区域诱发功能性磁共振成像(fMRI)血氧水平依赖性信号的激活。因此,本文的主要目的是演示无线瞬时神经递质浓度传感器系统(WINCS)与碳纳米纤维(CNF)多路阵列电极的结合,作为通过同步检测阐明DBS机理的强大工具多种生物活性分子。方法:在4英寸的硅晶片上制备图案化的CNF纳米电极阵列,其中每个器件由3×3个200μm正方形的电极焊盘组成,其中包含以1μm间隔隔开的CNF。体外使用快速扫描循环伏安法(FSCV)将多路复用的碳纳米纤维CNF电极与WINCS集成在一起,以检测多巴胺(DA)和氧气(O2)的混合物。结果:首先,证明了在两个空间不同的位置(相距200 um)同时检测O2。其次,演示了使用两个不同的解耦波形同时检测两个空间不同位置处的O2和DA。第三,对照研究表明必须对波形进行交织,以避免采集数据中出现电极串扰伪像。结论:用于神经递质电化学检测的多路复用CNF纳米电极阵列显示了应用与时间无关的去耦波形检测多种分析物的希望。 CNF电极上的电化学可能有助于阐明DBS的机理,也可能提供将来在反馈调制DBS神经控制系统中应用所需的精度和灵敏度。

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