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Magnetic neural stimulation of peripheral nerve: A study for optimum spatial and temporal electric field distribution

机译:周围神经的磁神经刺激:最佳空间和时间电场分布的研究

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Magnetic stimulation of peripheral nerves is an evolving research that leads to contactless activation of the axons. Traditionally, this technique was applied for the design of transcranial stimulators and was subsequently used in clinical studies for the treatment of epilepsy, chronic pain and mood disorder. Despite its success, the large dimension of the magnetic stimulator and the significant energy requirement to elicit neural activity hindered the ability of magnetic stimulators to become a viable candidate for the implantable systems. Compared to electrical neural stimulation, magnetic stimulators require ~10 times higher energy and ~50 times larger electrode (or coil). Therefore, there is a need to research strategies to minimize the energy and dimensions of magnetic stimulators.
机译:外周神经的磁刺激是一种不断发展的研究,导致轴突的非接触激活。传统上,这种技术用于颅脑刺激器的设计,随后用于治疗癫痫,慢性疼痛和情绪障碍的临床研究。尽管其成功,磁刺激器的大尺寸和引出神经活动的显着能源要求阻碍了磁刺激器成为可植入系统的可行候选者的能力。与电神经刺激相比,磁刺激器需要〜10倍的能量,电极(或线圈)的〜50倍。因此,需要研究策略以最小化磁刺激器的能量和尺寸。

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