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Thermal model of spiked electrode in Transcutaneous Electrical Nerve Stimulation (TENS)

机译:经皮神经电刺激(TENS)中的尖峰电极热模型

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Transcutaneous Electrical Nerve Stimulation (TENS) attracts extensive attention in neuromodulation due to its minimal invasiveness. Conventional TENS uses non-invasive surface planar electrodes attached to the skin for delivering the stimulation current to modulate neural circuitries. Previous studies have shown that using these surface planar electrodes in TENS therapy may cause stimulation-induced skin irritation. In order to validate the cause and solve this problem, a bioheat transfer study in a realistic human spinal cord model was built based on finite element method (FEM) and a spiked electrode is proposed to avoid skin burning by taking into consideration both the electrical and thermal properties of the layered skin. Results show the peak temperature of using the spiked electrode for stimulation is around 37.1 °C, much lower than using the planar electrode (51.6 °C). Moreover, in contrast to the traditional surface electrodes, the peak necrosis fraction of using the spiked electrode is 0.02, indicating that the whole biological model is thermally safe and does not cause skin irritation.
机译:经皮神经刺激(TENS)由于其侵袭性最小,吸引了神经调节的广泛关注。传统的数十使用连接到皮肤上的非侵入式表面平面电极来输送刺激电流以调节神经电路。以前的研究表明,在数十疗法中使用这些表面平面电极可能导致刺激诱导的皮肤刺激。为了验证原因并解决这个问题,基于有限元方法(FEM)构建了现实人体脊髓模型中的生物气热转移研究,提出了一种尖刺电极,以避免皮肤燃烧,通过考虑电气和电气层状皮肤的热性质。结果显示使用刺激电极的峰值温度约为37.1℃,远低于使用平面电极(51.6°C)。此外,与传统的表面电极相比,使用掺入电极的峰坏死部分为0.02,表明整个生物模型是热安全的并且不会引起皮肤刺激。

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