Munich Institute of Biomedical Engineering (MIBE), Technische Universität München, Garching 85748, Germany.
Bio-inspired Information Processing (BAI), Technische Universität München, Garching 85748, Germany.
Biomed Phys Eng Express. 2022 Feb 18;8(2). doi: 10.1088/2057-1976/ac52d8.
Peripheral magnetic stimulation is a promising technique for several applications like rehabilitation or diagnose of neuronal pathways. However, most available magnetic stimulation devices are designed for transcranial stimulation and require high-power, expensive hardware. Modern technology such as rectangular pulses allows to adapt parameters like pulse shape and duration in order to reduce the required energy. Nevertheless, the effect of different temporal electromagnetic field shapes on neuronal structures is not yet fully understood. We created a simulation environment to find out how peripheral nerves are affected by induced magnetic fields and what pulse shapes have the lowest energy requirements. Using the electric field distribution of acoil together with an axon model in saline solution, we calculated the potential along the axon and determined the required threshold current to elicit an action potential. Further, for the purpose of selective stimulation, we investigated different axon diameters. Our results show that rectangular pulses have the lowest thresholds at a pulse duration of 20s. For sinusoidal coil currents, the optimal pulse duration was found to be 40s. Most importantly, with an asymmetric rectangular pulse, the coil current could be reduced from 2.3 kA (cosine shaped pulse) to 600 A. In summary, our results indicate that for magnetic nerve stimulation the use of rectangular pulse shapes holds the potential to reduce the required coil current by a factor of 4, which would be a massive improvement.
外周磁刺激在康复或神经元通路诊断等多个应用领域具有广阔的应用前景。然而,大多数现有的磁刺激设备是为经颅刺激设计的,需要高功率、昂贵的硬件。现代技术,如矩形脉冲,允许调整脉冲形状和持续时间等参数,以降低所需的能量。然而,不同的时域电磁场形状对神经元结构的影响还不完全清楚。我们创建了一个模拟环境,以了解外周神经是如何受到感应磁场的影响的,以及哪些脉冲形状具有最低的能量要求。我们使用线圈的电场分布和盐溶液中的轴突模型,计算了轴突上的电势,并确定了引起动作电位所需的阈值电流。此外,为了实现选择性刺激,我们研究了不同的轴突直径。我们的结果表明,在脉冲持续时间为 20s 时,矩形脉冲具有最低的阈值。对于正弦线圈电流,发现最佳脉冲持续时间为 40s。最重要的是,使用不对称矩形脉冲,线圈电流可以从 2.3kA(余弦形状脉冲)降低到 600A。综上所述,我们的结果表明,对于磁神经刺激,使用矩形脉冲形状有可能将所需的线圈电流降低 4 倍,这将是一个巨大的改进。