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Selective electrical stimulation of low versus high diameter myelinated fibers and its application in pain relief: a modeling study

机译:低直径与高直径有髓鞘纤维的选择性电刺激及其在缓解疼痛中的应用:建模研究

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摘要

Electrical stimulation of peripheral nerve fibers has always been an attractive field of research. Due to the higher activation threshold, the stimulation of small fibers is accompanied by the stimulation of larger ones. It is therefore necessary to design a specific stimulation theme in order to only activate narrow fibers. There is evidence that stimulating A delta fibers can activate endogenous pain-relieving mechanisms. However, both selective stimulation and reducing pain by activating small nociceptive fibers are still poorly investigated. In this study, using high-frequency stimulation waveforms (5-20 kHz), computational modeling provides a simple framework for activating narrow nociceptive fibers. Additionally, a model of myelinated nerve fibers is modified by including sodium-potassium pump and investigating its effects on neuronal stimulation. Besides, a modified mathematical model of pain processing circuits in the dorsal horn is presented that consists of supraspinal pain control mechanisms. Hence, by employing this pain-modulating model, the mechanism of the reduction of pain by activating nociceptive fibers is explored. In the case of two fibers with the same distance from the point source electrode, a single stimulation waveform is capable of blocking one large fiber and stimulating another small fiber. Noteworthy, the Na/K pump model demonstrated that it does not have a significant effect on the activation threshold and firing frequency of fiber. Ultimately, results suggest that the descending pathways of Locus coeruleus may effectively contribute to pain relief through stimulation of nociceptive fibers, which will be beneficial for clinical interventions.
机译:周围神经纤维的电刺激一直是一个有吸引力的研究领域。由于较高的活化阈值,小纤维的刺激伴随着大纤维的刺激。因此,有必要设计一个特定的刺激主题,以便只激活窄纤维。有证据表明,刺激 A δ 纤维可以激活内源性止痛机制。然而,选择性刺激和通过激活小伤害性纤维来减轻疼痛的研究仍然很少。在这项研究中,使用高频刺激波形(5-20 kHz),计算建模为激活窄伤害性纤维提供了一个简单的框架。此外,通过包括钠钾泵并研究其对神经元刺激的影响来修改有髓鞘神经纤维的模型。此外,还提出了由脊髓上疼痛控制机制组成的背角疼痛处理回路的改进数学模型。因此,通过采用这种疼痛调节模型,探索了通过激活伤害感受纤维来减轻疼痛的机制。在两根光纤与点源电极距离相同的情况下,单个刺激波形能够阻挡一根大光纤并刺激另一根小光纤。值得注意的是,Na/K泵浦模型表明,它对纤维的活化阈值和烧成频率没有显著影响。最终,结果表明,蓝斑的下行途径可能通过刺激伤害感受纤维有效地缓解疼痛,这将有利于临床干预。

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