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Numerical modeling of percutaneous auricular vagus nerve stimulation : a realistic 3D model to evaluate sensitivity of neural activation to electrode position

机译:经皮耳廓迷走神经刺激的数值模拟:一个逼真的3D模型来评估神经激活对电极位置的敏感性

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摘要

Percutaneous stimulation of the auricular branch of the vagus nerve (pVNS) by miniaturized needle electrodes in the auricle gained importance as a treatment for acute and chronic pain. The objective is to establish a realistic numerical model of pVNS and investigate the effects of stimulation waveform, electrodes' depth, and electrodes' position on nerve excitation threshold and the percentage of stimulated nerves. Simulations were performed with Sim4Life. An electrostatic solver and neural tissue models were combined for electromagnetic and neural simulation. The numerical model consisted of a realistic high-resolution model of a human ear, blood vessels, nerves, and three needle electrodes. A novel 3D ear model was established, including blood vessels and nerves. The electric field distribution was extracted and evaluated. Maximum sensitivity to needles' depth and displacement was evaluated to be 9.8 and 15.5% per 0.1 mm, respectively. Stimulation was most effective using biphasic compared to mono-phasic pulses. The established model allows easy and quantitative evaluation of various stimulation setups, enabling optimization of pVNS in experimental settings. Results suggest a high sensitivity of pVNS to the electrodes' position and depth, implying the need for precise electrode positioning. Validation of the model needs to be performed.
机译:耳廓中的微型针状电极经皮刺激迷走神经的耳廓分支(pVNS)作为治疗急性和慢性疼痛的方法变得越来越重要。目的是建立一个真实的pVNS数值模型,并研究刺激波形,电极深度和电极位置对神经兴奋阈值和受刺激神经百分比的影响。用Sim4Life进行仿真。结合了静电求解器和神经组织模型进行电磁和神经仿真。数值模型由人耳,血管,神经和三个针状电极的逼真的高分辨率模型组成。建立了包括血管和神经在内的新型3D耳朵模型。提取并评估电场分布。对针的深度和位移的最大灵敏度分别为每0.1毫米9.8和15.5%。与单相脉冲相比,双相刺激最有效。建立的模型可以轻松,定量地评估各种刺激设置,从而在实验设置中优化pVNS。结果表明,pVNS对电极的位置和深度具有高度的敏感性,这意味着需要精确的电极定位。需要对模型进行验证。

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