Motogi Jun, Sugiyama Yukiya, Laakso Ilkka, Hirata Akimasa, Inui Koji, Tamura Manabu, Muragaki Yoshihiro
Institute of Advanced Biomedical Engineering & Science, Tokyo Women's Medical University, Shinjuku-ku, Tokyo 162-8666, Japan.
Phys Med Biol. 2016 Jun 21;61(12):4479-90. doi: 10.1088/0031-9155/61/12/4479. Epub 2016 May 25.
The in situ electric field in the peripheral nerve of the skin is investigated to discuss the selective stimulation of nerve fibres. Coaxial planar electrodes with and without intra-epidermal needle tip were considered as electrodes of a stimulator. From electromagnetic analysis, the tip depth of the intra-epidermal electrode should be larger than the thickness of the stratum corneum, the electrical conductivity of which is much lower than the remaining tissue. The effect of different radii of the outer ring electrode on the in situ electric field is marginal. The minimum threshold in situ electric field (rheobase) for free nerve endings is estimated to be 6.3 kV m(-1). The possible volume for electrostimulation, which can be obtained from the in situ electric field distribution, becomes deeper and narrower with increasing needle depth, suggesting that possible stimulation sites may be controlled by changing the needle depth. The injection current amplitude should be adjusted when changing the needle depth because the peak field strength also changes. This study shows that intra-epidermal electrical stimulation can achieve stimulation of small fibres selectively, because Aβ-, Aδ-, and C-fibre terminals are located at different depths in the skin.
研究皮肤周围神经中的原位电场,以探讨神经纤维的选择性刺激。带有和不带有表皮内针尖的同轴平面电极被视为刺激器的电极。从电磁分析来看,表皮内电极的针尖深度应大于角质层的厚度,角质层的电导率远低于其余组织。外环电极不同半径对原位电场的影响很小。游离神经末梢的最小原位电场阈值(基强度)估计为6.3 kV m⁻¹。可从原位电场分布获得的电刺激可能体积随着针深度增加而变得更深且更窄,这表明可能的刺激部位可通过改变针深度来控制。改变针深度时应调整注入电流幅度,因为峰值场强也会改变。本研究表明,表皮内电刺激可实现对小纤维的选择性刺激,因为Aβ、Aδ和C纤维终末位于皮肤中的不同深度。