Research Center for Bioelectromagnetic Interaction (femu)-Institute for Occupational, Social and Environmental Medicine, Uniklinik RWTH Aachen University, Aachen, Germany.
Institute for Occupational, Social and Environmental Medicine, Uniklinik RWTH Aachen University, Aachen, Germany.
Bioelectromagnetics. 2021 Jul;42(5):341-356. doi: 10.1002/bem.22347. Epub 2021 May 11.
As part of the energy transition in Germany, high-voltage direct current (HVDC) lines producing DC electric fields (EF) are in planning. Since the human perception of DC EF was rarely investigated in the past, we aimed to identify environmental and experimental factors influencing the human perception of direct current (DC) EF, alternating current (AC) EF, and the co-exposure of DC EF and AC EF (hybrid EF) under whole-body exposure. Additionally, first estimates of DC EF and AC EF perception thresholds as well as differences in human perception of DC EF and AC EF concerning the type of sensation experienced and the affected body part were evaluated. A highly sophisticated exposure lab was built to expose participants to various EF strengths and ask for their assessment concerning the presence of an EF. To estimate the individual perception thresholds of 11 participants, the signal detection theory as well as the single-interval-adjustment matrix procedure were applied. Relative humidity could be identified as an environmental factor influencing the perception of AC EF and DC EF in different ways. An appropriate ramp slope and an exposure duration for future studies could be elaborated. Additionally, perception thresholds were lower under hybrid EF exposure than under DC EF or AC EF exposure alone. Cutaneous sensations evoked under DC EF and AC EF exposure were individually different and attributed to various parts of the body. Several environmental and experimental factors influencing the human perception of EF could be identified and provide an essential basis for a large-scale study. © 2021 Bioelectromagnetics Society.
作为德国能源转型的一部分,正在规划产生直流电场 (EF) 的高压直流 (HVDC) 线路。由于过去很少研究人类对直流 EF 的感知,因此我们旨在确定环境和实验因素,这些因素会影响人体对直流 (DC) EF、交流 (AC) EF 以及在全身暴露下直流 EF 和交流 EF (混合 EF)的共同暴露的感知。此外,还评估了直流 EF 和交流 EF 感知阈值的初步估计值,以及人体对直流 EF 和交流 EF 的感知差异,涉及到所经历的感觉类型和受影响的身体部位。建立了一个高度复杂的暴露实验室,以将参与者暴露于各种 EF 强度下,并要求他们评估 EF 的存在。为了估计 11 名参与者的个体感知阈值,应用了信号检测理论和单间隔调整矩阵程序。相对湿度可以被确定为以不同方式影响交流 EF 和直流 EF 感知的环境因素。可以详细说明未来研究的适当斜坡斜率和暴露持续时间。此外,混合 EF 暴露下的感知阈值低于直流 EF 或交流 EF 单独暴露下的感知阈值。直流 EF 和交流 EF 暴露下引起的皮肤感觉因人而异,并归因于身体的不同部位。可以确定影响 EF 人体感知的几个环境和实验因素,并为大规模研究提供重要基础。© 2021 生物电磁学学会。