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闭环神经刺激设备随时间的阻抗变化:长期植入电极的早期经验。

Impedance variations over time for a closed-loop neurostimulation device: early experience with chronically implanted electrodes.

机构信息

Department of Neurological Surgery, Thomas Jefferson University, Philadelphia, PA 19107, USA.

出版信息

Neuromodulation. 2013 Jan-Feb;16(1):46-50; discussion 50. doi: 10.1111/j.1525-1403.2012.00529.x. Epub 2012 Nov 8.

Abstract

OBJECTIVE

Responsive neurostimulation (RNS®) is an investigational treatment modality for intractable focal epilepsy. We analyzed impedance values over time to gain a better understanding of RNS device stability, potential differences between depth and strip electrodes, and general implications of long-term electrode implantation.

MATERIALS AND METHODS

Impedance measurements were retrospectively reviewed from seven patients over a 3-year period. Statistical analysis was performed to investigate trends in impedance values over time and to determine if any differences existed between the means and variances of impedance values for the two different electrodes.

RESULTS

Intraparenchymal depth electrodes demonstrated lower mean impedances and had less variation over time when compared to subdural strip electrodes. There was no significant change in mean impedance over time for depth electrodes, while that of subdural electrodes increased over time to peak at 16-20 months and returned to baseline by 2 years.

CONCLUSION

The RNS device provides unique long-term data for both depth and subdural electrodes in human subjects. Although changes in impedance were observed with respect to time after implantation and electrode type, these variations were of a clinically insignificant magnitude. As a constant-current system, the device is ultimately able to administer stable therapeutic doses in the setting such minor variability. While further animal research and post mortem investigations in human subjects are necessary to broaden our understanding of the mechanisms occurring at the electrode-neural interface and the biocompatibility of chronically implanted electrodes, the relative stability of impedances seen in this cohort of chronic implants brings promise to future implementations of chronic intracranial neural implants.

摘要

目的

反应性神经刺激(RNS®)是一种治疗难治性局灶性癫痫的研究性治疗方法。我们分析了随时间推移的阻抗值,以更好地了解 RNS 设备的稳定性、深度和带状电极之间的潜在差异,以及长期电极植入的一般意义。

材料和方法

对 7 名患者在 3 年期间的阻抗测量值进行回顾性分析。进行了统计分析,以研究阻抗值随时间的趋势,并确定两种不同电极的阻抗值的均值和方差之间是否存在差异。

结果

与硬膜下带状电极相比,脑内深部电极的平均阻抗值较低,随时间的变化较小。深部电极的平均阻抗值随时间无显著变化,而硬膜下电极的阻抗值随时间增加,在 16-20 个月时达到峰值,2 年后恢复基线。

结论

RNS 设备为人体深部和硬膜下电极提供了独特的长期数据。尽管植入后和电极类型随时间的变化观察到阻抗变化,但这些变化在临床意义上微不足道。作为恒流系统,该设备最终能够在这种微小变化的情况下稳定地给予治疗剂量。虽然进一步的动物研究和人体死后调查对于扩大我们对电极-神经界面发生的机制和慢性植入电极的生物相容性的理解是必要的,但在本队列的慢性植入物中观察到的阻抗相对稳定性为未来慢性颅内神经植入物的实施带来了希望。

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