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高压电场暴露对猕猴神经生物学因素及视觉工作记忆的影响

Effect of High-voltage Electrical Field Exposure on Neurobiological Factors and Visual Working Memory of Macaques.

作者信息

Aliyari Hamed, Hosseinian Mohsen, Menhaj Mohammad Bagher, Sahraei Hedayat, Shabani Mohsen, Kazemi Masoomeh

机构信息

Department of Psychiatry, University of Texas Southwestern Medical Center, Dallas, Texas.

Department of Electrical Engineering, School of Electrical, Computer & Biomedical Engineering, Amirkabir University of Technology, Tehran, Iran.

出版信息

Basic Clin Neurosci. 2025;16(Spec Issue):251-264. doi: 10.32598/bcn.2023.2368.1. Epub 2025 Mar 18.

Abstract

INTRODUCTION

High-voltage (HV) power transmission lines running near cities and villages can cause severe damage (mental and physical) due to the magnetic and electric fields they produce. This study aimed to investigate the effects of HV electric fields on the spiking neural network (SNN) model of the brain and biological and behavioral models of visual working memory.

METHODS

To achieve this goal, macaques were studied for their cognitive functions, expression of the NMDA receptor gene, MRI-assisted analysis of brain anatomy, and variations in blood sodium and potassium concentrations. The experimental group of macaques was exposed to a 3 kV/m HV field for 4 hours a day for 1 month. Computational models were then evaluated using experimental parameters.

RESULTS

According to the results, exposure to HV electric fields reduced the expression of the NMDA receptor gene, as well as a decrease in the levels of sodium and potassium ions in the blood plasma. Additionally, MRI-assisted analysis showed reduced hippocampus and amygdala size after exposure to the electric field.

CONCLUSION

The results of cognitive, genetic, blood, and MRI tests, along with the SNN model, elucidate the mechanism of the visual working memory deterioration in macaques due to HV electric field exposure.

摘要

引言

在城市和乡村附近运行的高压输电线路,因其产生的磁场和电场,可能会造成严重损害(包括精神和身体方面)。本研究旨在探究高压电场对大脑的脉冲神经网络(SNN)模型以及视觉工作记忆的生物学和行为学模型的影响。

方法

为实现这一目标,对猕猴进行了认知功能、NMDA受体基因表达、MRI辅助的脑解剖分析以及血钠和血钾浓度变化的研究。猕猴实验组每天暴露于3 kV/m的高压电场中4小时,持续1个月。然后使用实验参数评估计算模型。

结果

根据结果,暴露于高压电场会降低NMDA受体基因的表达,同时血浆中钠和钾离子水平也会降低。此外,MRI辅助分析显示,暴露于电场后海马体和杏仁核的大小减小。

结论

认知、基因、血液和MRI测试结果以及SNN模型,阐明了猕猴因暴露于高压电场而导致视觉工作记忆衰退的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/716c/12265430/46b5de5e229e/BCN-16-251-g001.jpg

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