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PEDOT:PSS electrodes for acute experimental evaluation of vagus nerve stimulation on rodents

机译:PEDOT:PSS电极对啮齿动物迷走神经刺激的急性实验评估

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The vagus nerve (VN) is involved in the autonomic regulation of many physiological systems (cardiovascular, respiratory, gastrointestinal, etc.) and its stimulation is already an approved therapy for refractory epilepsy and depression. Other pathologies are thought to be treatable through vagus nerve stimulation (VNS), such as heart failure, cardiac arrhythmia, inflammation or auto-immune diseases. However, the efficacy of the stimulation is not always optimal, partly due to the materials and the architecture of currently available electrodes. Standard electrodes, composed of metallic rings that stimulate the whole diameter of the nerve, are not adapted to experimentations involving spatial selectivity. Efficient and selective charge injection is usually difficult to achieve simultaneously, especially in experimental setups using rodents, due to the thin diameter of their VN. In this paper, we show that we can take advantage of the high charge injection property of conducting polymers to acutely stimulate the vagus nerve in rodents, using individual active electrodes with dimensions 725 μm × 450 μm. A particular PEDOT:PSS architecture integrating 12 active electrodes is developed and applied to the VN of one rat. A closed-loop VNS system developed in our previous works is used to stimulate the VN while analyzing the heart rate response. Results show the feasibility of this kind of electrodes for acute VNS on rodents and open the path towards new experimentations focused on selective stimulation and recording.
机译:迷走神经(VN)参与许多生理系统(心血管,呼吸系统,胃肠道等)的自主调节,其刺激已经被批准用于治疗难治性癫痫和抑郁症。其他病理被认为可以通过迷走神经刺激(VNS)来治疗,例如心力衰竭,心律不齐,炎症或自身免疫性疾病。然而,部分地由于当前可用电极的材料和结构,刺激的效果并不总是最佳的。由刺激神经整个直径的金属环组成的标准电极不适用于涉及空间选择性的实验。通常很难同时实现高效和选择性的电荷注入,尤其是在使用啮齿动物的实验装置中,因为它们的VN直径很细。在本文中,我们表明,使用尺寸为725μm×450μm的单个有源电极,可以利用导电聚合物的高电荷注入特性来急性刺激啮齿动物的迷走神经。开发了一种集成了12个有源电极的特殊PEDOT:PSS体系结构,并将其应用于一只大鼠的VN。我们之前的工作中开发的闭环VNS系统用于在分析心率响应时刺激VN。结果表明,这种电极可用于啮齿动物上的急性VNS,并为侧重于选择性刺激和记录的新实验开辟了道路。

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