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An Integrated Flexible Implantable Micro-Probe for Sensing Neurotransmitters

机译:集成的柔性植入式微探针,用于感知神经递质。

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In this work, we have developed an integrated flexible implantable probe on a polyimide-film substrate for sensing neurotransmitters. The flexibility of the probe helps to prevent scar forming in tissues aiming for long-term in vivo monitoring. A micro Ag/AgCl reference electrode was integrated in the same probe with the Au/Cr or Pt/Cr working electrodes providing measurements without the need of a separate reference probe. Several electrode configurations have been considered and designed for implantation at various locations in the central nervous system. The prototype device for proof of principle was an enzyme-based electrochemical L-glutamate sensor using L-glutamate oxidase. A comparison between Au and Pt thin films was conducted by cyclic voltammetry to evaluate their performance as working electrodes. The L-glutamate oxidase was deposited on the working electrodes followed by a meta-Phenylenediamine electropolymerization process to improve the selectivity. The self-referencing technique was also utilized to enhance both the limit of detection and selectivity. The assembled sensors were calibrated and tested at various concentrations of L-glutamate with and without the presence of interfering molecules. The results showed good sensitivity and selectivity. In vivo animal tests were conducted to show the capability of detecting changes of electrochemical signals responding to graded peripheral somatosensory stimuli.
机译:在这项工作中,我们已经开发了一种集成的柔性植入式探针,该探针在聚酰亚胺薄膜基材上用于感测神经递质。探头的灵活性有助于防止组织中的疤痕形成,从而可进行长期体内监测。微型Ag / AgCl参比电极与Au / Cr或Pt / Cr工作电极集成在同一探针中,无需单独的参比探针即可进行测量。已经考虑并设计了几种电极配置并设计用于植入中枢神经系统的各个位置。用于证明原理的原型设备是使用L-谷氨酸氧化酶的基于酶的电化学L-谷氨酸传感器。通过循环伏安法对Au和Pt薄膜进行比较,以评估其作为工作电极的性能。将L-谷氨酸氧化酶沉积在工作电极上,然后进行间苯二胺电聚合工艺以提高选择性。自参考技术还被用来增强检测限和选择性。在存在和不存在干扰分子的情况下,在各种浓度的L-谷氨酸中对组装的传感器进行校准和测试。结果显示出良好的灵敏度和选择性。进行了体内动物试验,以显示检测响应于分级的外周体感刺激的电化学信号变化的能力。

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  • 来源
    《Sensors Journal, IEEE》 |2012年第5期|p.1618-1624|共7页
  • 作者

    Hung Cao;

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