脑深部电极的体内电特性及其对生物放大器设计的影响

Florian Kolbl, A. Zbrzeski, Emilie Syed, S. Renaud, N. Lewis
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引用次数: 8

摘要

脑记录和刺激系统在神经科学中具有重要意义。它们包括一个电极或一组电极,位于神经电子界面。NEX 100和MS 306电极通常用于在大鼠大脑深部精确放置,但很少有表征数据可用。在考虑了与界面电模型相关的问题后,本文在LFP记录条件下,为这些特定电极提供了一种体内表征设置。我们讨论了电极模型参数的可变性。然后将提取的模型纳入电学仿真,并评估其对生物放大器设计的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vivo electrical characterization of deep brain electrode and impact on bio-amplifier design
Brain recording and stimulating systems are of major importance in neuroscience. They include an electrode or an array of electrodes, at the neuro-electronic interface. The electrodes NEX 100 and MS 306 are commonly used for accurate placement in deep sites of rats' brain, but few characterization data are available. After considerations related to the interface electrical model, this paper exposes an in vivo characterization set-up, for those specific electrodes, in LFP recording conditions. We discuss the variability of the electrode model parameters. Then the extracted model is included in electrical simulations and we evaluate its influence on the bio-amplifier design.
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