高达3000微特斯拉的60赫兹磁场暴露对通过功能磁共振成像测量的人脑激活的影响。

Effects of a 60 Hz Magnetic Field Exposure Up to 3000 μT on Human Brain Activation as Measured by Functional Magnetic Resonance Imaging.

作者信息

Legros Alexandre, Modolo Julien, Brown Samantha, Roberston John, Thomas Alex W

机构信息

Human Threshold Research Group, Lawson Health Research Institute, London, Ontario, Canada; Department of Medical Biophysics, Western University, London, Ontario, Canada; Department of Medical Imaging, Western University, London, Ontario, Canada; School of Kinesiology, Western University, London, Ontario, Canada.

Human Threshold Research Group, Lawson Health Research Institute, London, Ontario, Canada; Department of Medical Biophysics, Western University, London, Ontario, Canada; Department of Medical Imaging, Western University, London, Ontario, Canada.

出版信息

PLoS One. 2015 Jul 27;10(7):e0132024. doi: 10.1371/journal.pone.0132024. eCollection 2015.

Abstract

Several aspects of the human nervous system and associated motor and cognitive processes have been reported to be modulated by extremely low-frequency (ELF, < 300 Hz) time-varying Magnetic Fields (MF). Due do their worldwide prevalence; power-line frequencies (60 Hz in North America) are of particular interest. Despite intense research efforts over the last few decades, the potential effects of 60 Hz MF still need to be elucidated, and the underlying mechanisms to be understood. In this study, we have used functional Magnetic Resonance Imaging (fMRI) to characterize potential changes in functional brain activation following human exposure to a 60 Hz MF through motor and cognitive tasks. First, pilot results acquired in a first set of subjects (N=9) were used to demonstrate the technical feasibility of using fMRI to detect subtle changes in functional brain activation with 60 Hz MF exposure at 1800 μT. Second, a full study involving a larger cohort of subjects tested brain activation during 1) a finger tapping task (N=20), and 2) a mental rotation task (N=21); before and after a one-hour, 60 Hz, 3000 μT MF exposure. The results indicate significant changes in task-induced functional brain activation as a consequence of MF exposure. However, no impact on task performance was found. These results illustrate the potential of using fMRI to identify MF-induced changes in functional brain activation, suggesting that a one-hour 60 Hz, 3000 μT MF exposure can modulate activity in specific brain regions after the end of the exposure period (i.e., residual effects). We discuss the possibility that MF exposure at 60 Hz, 3000 μT may be capable of modulating cortical excitability via a modulation of synaptic plasticity processes.

摘要

据报道,人类神经系统以及相关的运动和认知过程的几个方面会受到极低频(ELF,<300Hz)时变磁场(MF)的调节。由于其在全球范围内的普遍存在,电力线频率(北美为60Hz)备受关注。尽管在过去几十年中进行了大量研究,但60Hz MF的潜在影响仍有待阐明,其潜在机制也有待了解。在本研究中,我们使用功能磁共振成像(fMRI)来表征人类通过运动和认知任务暴露于60Hz MF后,大脑功能激活的潜在变化。首先,在第一组受试者(N = 9)中获得的初步结果用于证明使用fMRI检测在1800μT的60Hz MF暴露下大脑功能激活细微变化的技术可行性。其次,一项涉及更大样本量受试者的全面研究在1)手指敲击任务(N = 20)和2)心理旋转任务(N = 21)期间测试大脑激活;在1小时的3000μT、60Hz MF暴露之前和之后。结果表明,MF暴露导致任务诱导的大脑功能激活发生显著变化。然而,未发现对任务表现有影响。这些结果说明了使用fMRI识别MF诱导的大脑功能激活变化的潜力,表明1小时的3000μT、60Hz MF暴露在暴露期结束后(即残留效应)可以调节特定脑区的活动。我们讨论了3000μT、60Hz MF暴露可能通过调节突触可塑性过程来调节皮层兴奋性的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47e1/4516358/5e781c20cfbe/pone.0132024.g001.jpg

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