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An implantable microelectrode array for dopamine and electrophysiological recordings in response to L-dopa therapy for Parkinson's disease

机译:可植入微电极阵列,用于多巴胺和电生理记录,以响应帕金森氏病的左旋多巴疗法

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Dual-mode multielectrode recordings have become routine in rodent neuroscience research. However, robust and reliable application of acute, multielectrode recording methods in brain especially for in vivo research remains a challenge. In patients with Parkinson's disease (PD), the efficacy of L-dopa therapy depends on its ability to restore Dopamine (DA) neurotransmission in the striatum. In this paper, We describe a low cost thin film 16 sites implantable microelectrode array (MEA) chip fabricated by standard lithography technology for in vivo test. In urethane anesthetized rats, the MEA probes were implanted acutely for simultaneous recording of local field potentials, spikes, and L-dopa therapy evoked dopamine overflow on the same spatiotemporal scale. We present a detailed protocol for array fabrication, then show that the device can record Spikes, LFPs and dopamine variation in real time. Across any given microelectrode, spike amplitudes ranged from 80 to 300 μν peak to peak, with a mean signal-tonoise ratio of better than 5:1. Calibration results showed the MEA probe had high sensitivity and good selectivity for DA. Comparison with existing methods allow single mode recording, our neural probes would be useful for examining specific spatiotemporal relationships between electrical and chemical signaling in the brain.
机译:双模式多电极记录已成为啮齿动物神经科学研究中的常规方法。然而,急性,多电极记录方法在脑中的稳健而可靠的应用,尤其是在体内研究中,仍然是一个挑战。在帕金森氏病(PD)患者中,左旋多巴疗法的疗效取决于其恢复纹状体中多巴胺(DA)神经传递的能力。在本文中,我们描述了一种通过标准光刻技术制造的低成本薄膜16位可植入微电极阵列(MEA)芯片,用于体内测试。在氨基甲酸乙酯麻醉的大鼠中,将MEA探针急性植入,以同时记录局部场电势,峰值和L-多巴疗法在相同的时空范围内诱发多巴胺溢流。我们提出了阵列制造的详细协议,然后表明该设备可以实时记录尖峰,LFP和多巴胺的变化。在任何给定的微电极上,尖峰幅度的峰峰值范围为80至300μv,平均信噪比优于5:1。校准结果表明,MEA探针对DA具有很高的灵敏度和良好的选择性。与现有方法的比较允许单模式记录,我们的神经探针将有助于检查大脑中电信号和化学信号之间的特定时空关系。

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