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Conductive Hydrogel Electrodes for Delivery of Long-Term High Frequency Pulses

机译:导电水凝胶电极可输送长期高频脉冲

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摘要

Nerve block waveforms require the passage of large amounts of electrical energy at the neural interface for extended periods of time. It is desirable that such waveforms be applied chronically, consistent with the treatment of protracted immune conditions, however current metal electrode technologies are limited in their capacity to safely deliver ongoing stable blocking waveforms. Conductive hydrogel (CH) electrode coatings have been shown to improve the performance of conventional bionic devices, which use considerably lower amounts of energy than conventional metal electrodes to replace or augment sensory neuron function. In this study the application of CH materials was explored, using both a commercially available platinum iridium (PtIr) cuff electrode array and a novel low-cost stainless steel (SS) electrode array. The CH was able to significantly increase the electrochemical performance of both array types. The SS electrode coated with the CH was shown to be stable under continuous delivery of 2 mA square pulse waveforms at 40,000 Hz for 42 days. CH coatings have been shown as a beneficial electrode material compatible with long-term delivery of high current, high energy waveforms.
机译:神经阻滞波形需要长时间在神经接口传递大量电能。理想的是,与长期免疫状况的治疗相一致地长期施加这种波形,但是当前的金属电极技术在安全地传递持续稳定的阻塞波形的能力方面受到限制。导电水凝胶(CH)电极涂层已显示可改善常规仿生设备的性能,与常规金属电极相比,该仿生设备使用的能量要低得多,以替代或增强感觉神经元功能。在这项研究中,通过使用市售的铂铱(PtIr)袖套电极阵列和新型低成本不锈钢(SS)电极阵列,探索了CH材料的应用。 CH能够显着提高两种阵列类型的电化学性能。涂有CH的SS电极在40,000 Hz下连续递送2 mA方波波形连续42天的情况下显示出稳定的性能。 CH涂层已被证明是有益的电极材料,可与高电流,高能量波形的长期输送兼容。

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