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用于增强周围神经刺激中电场感应的优化线圈设计。

Optimized Coil Design for Enhanced Electric Field Induction in Peripheral Nerve Stimulation.

作者信息

Park Jaeu, Jae Lee Kyeong, Nagwade Pritish, Jeong Jinwoong, Hoan Park Jeong, Choi Hongsoo, Kim Sohee, Lee Sanghoon

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2025;33:3225-3236. doi: 10.1109/TNSRE.2025.3599634.

DOI:10.1109/TNSRE.2025.3599634
PMID:40824993
Abstract

Peripheral nerve electrical stimulation is widely used for the treatment of neuropathic pain and neural regeneration. However, it often induces adverse biological reactions and unintended activation of surrounding neural tissues. As an alternative, peripheral nerve magnetic stimulation offers a promising, less invasive approach that enables targeted nerve stimulation without direct tissue contact. Despite its potential, it is constrained by the bulkiness of coils and excessive heat generation due to the high currents required. To address these limitations, we conducted a study on coil design optimized for peripheral nerve modulation. Our approach, supported by simulations and animal experiments, focused on optimizing coil geometry to maximize the induced electric field gradient. Among various designs, a four-leaf rhombus-shaped coil demonstrated the highest gradient at the center of the interface. In rat sciatic nerve experiments, this coil, driven by a rectangular pulse with a $200~\mu $ s rise time and 25 V amplitude, successfully elicited compound muscle action potentials in both the tibial anterior and gastrocnemius muscles. This study presents design guidelines for peripheral nerve stimulation (PNS) coils based on magnetic stimulation as an alternative to conventional electrical stimulation. The proposed approach may serve as a foundation for the development of advanced, miniaturized, and energy-efficient neural stimulation coils.

摘要

外周神经电刺激被广泛用于治疗神经性疼痛和神经再生。然而,它常常会引发不良生物反应以及意外激活周围神经组织。作为一种替代方法,外周神经磁刺激提供了一种有前景的、侵入性较小的途径,能够在不直接接触组织的情况下实现靶向神经刺激。尽管其具有潜力,但由于所需的高电流,它受到线圈体积庞大和产生过多热量的限制。为了解决这些局限性,我们开展了一项针对外周神经调制优化的线圈设计研究。我们的方法得到了模拟和动物实验的支持,重点在于优化线圈几何形状以最大化感应电场梯度。在各种设计中,四叶菱形线圈在界面中心处显示出最高的梯度。在大鼠坐骨神经实验中,该线圈由上升时间为200微秒、幅度为25伏的矩形脉冲驱动,成功在胫前肌和腓肠肌中引发了复合肌肉动作电位。本研究提出了基于磁刺激的外周神经刺激(PNS)线圈的设计指南,作为传统电刺激的替代方法。所提出的方法可为先进、小型化和节能的神经刺激线圈的开发奠定基础。

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