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Ultrashort pulsed electric fields induce action potentials in neurons when applied at axon bundles

机译:当应用在轴突束上时,超短脉冲电场会诱导神经元的动作电位

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There is a constant and growing demand for new methods to treat drug-resistant neurological disease. Ultrashort pulsed electric fields are a new tool that has shown some promise for electrically stimulating neurons and other excitable cells. Thus far, most studies have focused on the application of these short-lived pulsed electric fields to neuronal soma, whereas axonal bundles and/or white matter has received less attention. The present work demonstrates the potential and reliability of ultrashort pulsed electric field for neurostimulation when they are applied to axon bundles. Application of a single 10-ns pulse was sufficient to initiate action potentials with a threshold of 27.8 kV/cm. The observed effect was repeatable and stable. The results highlight the potential use of ultrashort pulsed electric field for stimulation of subcortical structures and suggest they may have promise as a wireless alternative to the deep brain stimulation.
机译:对治疗抗药性神经系统疾病的新方法的需求不断增长。超短脉冲电场是一种新工具,已显示出对电刺激神经元和其他可兴奋细胞的希望。迄今为止,大多数研究都集中在这些短时脉冲电场在神经元躯体上的应用,而轴突束和/或白质受到的关注较少。本工作证明了将超短脉冲电场应用于轴突束时对神经刺激的潜力和可靠性。施加单个10 ns脉冲足以启动27.8 kV / cm阈值的动作电位。观察到的效果是可重复且稳定的。研究结果突显了超短脉冲电场在刺激皮层下结构方面的潜在用途,并暗示它们有望作为深部脑刺激的无线替代品。

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