Human Threshold Research and Bioelectromagnetics Group, Imaging, Lawson Health Research Institute, London, Canada.
Department of Kinesiology, Western University, London, Canada.
Bioelectromagnetics. 2022 Sep;43(6):355-367. doi: 10.1002/bem.22417. Epub 2022 Jul 8.
Electric fields from both extremely low-frequency magnetic fields (ELF-MF) and alternating current (AC) stimulations impact human neurophysiology. As the retinal photoreceptors, vestibular hair cells are graded potential cells and are sensitive to electric fields. Electrophosphene and magnetophosphene literature suggests different impacts of AC and ELF-MF on the vestibular hair cells. Furthermore, while AC modulates the vestibular system more globally, lateral ELF-MF stimulations could be more utricular specific. Therefore, to further address the impact of ELF-MF-induced electric fields on the human vestibular system and the potential differences with AC stimulations, we investigated the effects of both stimulation modalities on the perception of verticality using a subjective visual vertical (SVV) paradigm. For similar levels of SVV precision, the ELF-MF condition required more time to adjust SVV, and SVV variability was higher with ELF-MF than with AC vestibular-specific stimulations. Yet, the differences between AC and ELF-MF stimulations were small. Overall, this study highlights small differences between AC and ELF-MF vestibular stimulations, underlines a potential utricular contribution, and has implications for international exposure guidelines and standards. © 2022 Bioelectromagnetics Society.
电场来自极低频磁场(ELF-MF)和交流电(AC)刺激都会影响人类神经生理学。作为视网膜光感受器,前庭毛细胞是分级电位细胞,对电场敏感。关于电闪光和磁闪光的文献表明,AC 和 ELF-MF 对前庭毛细胞有不同的影响。此外,虽然 AC 更全面地调节前庭系统,但侧向 ELF-MF 刺激可能更具壶腹特异性。因此,为了进一步探讨 ELF-MF 诱导的电场对人体前庭系统的影响,以及与 AC 刺激的潜在差异,我们使用主观垂直视觉(SVV)范式研究了这两种刺激模式对垂直感知的影响。对于相似的 SVV 精度水平,ELF-MF 条件需要更多的时间来调整 SVV,ELF-MF 比 AC 前庭特异性刺激的 SVV 变异性更高。然而,AC 和 ELF-MF 刺激之间的差异很小。总体而言,这项研究强调了 AC 和 ELF-MF 前庭刺激之间的微小差异,强调了可能的壶腹贡献,并对国际暴露指南和标准具有重要意义。 2022 年生物电磁学会。