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工频电磁场长期作用影响工作记忆中局部场电位因果网络连接特征 被引量:7

Long term power frequency electromagnetic fields exposure influences the causal network connection pattern of local field potentials during working memory
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摘要 电磁场(EMF)作用对神经系统功能的影响,现已成为电磁生物效应领域广泛关注的问题。本文旨在从神经信息网络连接角度探究工频EMF长期作用对大脑认知功能的影响及其机制。本文将斯普拉格·道利(SD)大鼠随机分为3组,其中模型Ⅰ组将SD大鼠置于2 mT工频EMF中作用24 d;模型Ⅱ组将SD大鼠置于2 mT工频EMF中作用48 d;对照组SD大鼠未经工频EMF作用。随后,采集不同组别SD大鼠执行工作记忆(WM)任务过程中前额皮层(PFC)16通道的局部场电位信号(LFPs),并基于定向传递函数(DTF)构建LFPs因果连接网络,最终通过对比各组SD大鼠在WM过程中LFPs信号因果网络特征参数及行为学表现的异同,探讨工频EMF长期作用对WM的影响。本文研究结果显示,模型Ⅱ组大鼠执行WM任务达到正确率80%以上所需时间及次数明显多于对照组。WM任务中,模型Ⅰ、Ⅱ组因果网络连接强度及全局效率值均明显低于对照组;且模型Ⅱ组中因果网络连接密度值明显低于模型Ⅰ组及对照组。结果表明,经2 mT工频EMF的长期作用,PFC的LFPs信号间因果网络连接强度及全局效率降低,并影响SD大鼠的行为学表现。本文的研究结果从神经网络信息传递的角度揭示了工频EMF作用影响大脑认知功能的可能机制,可为进一步研究其作用机制提供重要的支持。 The possible influence of electromagnetic field (EMF)on the function of neural systems has been widely concerned.In this article,we intend to investigate the effects of long term power frequency EMF exposure on brain cognitive functions and it's mechanism.The Sprague-Dawley (SD)rats were randomly divided into 3groups:the rats in EMF Ⅰ group were placed in the 2m.T power frequency EMF for 24 days.The rats in EMF Ⅱ group were placed in the 2 mT power frequency EMF for48days.The rats in control group were not exposed to the EMF.Then,the 16channel local field potentials (LFPs)were recorded from rats'prefrontal cortex (PFC)in each group during the working memory (WM)tasks.The causal networks of LFPs were also established by applying the directed transfer function (DTF).Based on that,the differences of behavior and the LFPs network connection patterns between different groups were compared in order to investigate the influence of long term power frequency EMF exposure on working memory. The results showed the rats in the EMF Ⅱ group needed more training to reach the task correction criterion (over 80%). Moreover,the causal network connection strength and the global efficiency of the rats in EMF Ⅰ and EMF Ⅱgroups were significantly lower than the corresponding values of the control group.Meanwhile,significant differences of causal density values were found between EMF Ⅱgroup and the other two groups.These results indicate that long term exposure to 2mT power frequency EMF will reduce the connection strength and the information transfer efficiency of the LFPs causal network in the PFC,as well as the behavior performance of the rats.These results may explain the effect of EMF exposure on working memory from the view of neural network connectivity and provide a support for further studies on the mechanism of the effect ofEMF on cognition.
作者 李双燕 温雪晗 桑浩钧 徐桂芝 LI Shuangyan;WEN Xuehan;SANG Haojun;XU Guizhi(State Key Laboratory of Reliability and Intelligence of Electrical Equipment,School of Electrical Engineering,Hebei University of Technology,Tianjin 300130,P.R.China;Key Laboratory of Electromagnetic Field and Electrical Apparatus Reliability of Hebei Province,School of Electrical Engineering,Hebei University of Technology,Tianjin 300130,P.R.China)
出处 《生物医学工程学杂志》 EI CAS CSCD 北大核心 2018年第6期829-836,共8页 Journal of Biomedical Engineering
基金 国家自然科学基金资助项目(51507047 61571180) 河北省自然科学基金资助项目(F2018202319)
关键词 工频电磁场 长期作用 工作记忆 局部场电位 因果网络连接特征 power frequency electromagnetic field long term exposure working memory local field potentials connection pattern of causal network
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  • 1World Health Organization. Fact sheet No 322, electromagnetic fields and public health: exposure to extremely low frequency fields[R/OL]. Geneva, Switzerland: World Health Organiza- tion, 2007[2007-10-20]. http://www. who. int/.
  • 2World Health Organization. The international EMF project [DB/OL]. Geneva, Switzerland: World Health Organization, 2007 [2008-01-06]. http://www, who. int/.
  • 3World Health Organization. Establishing a dialogue on risks from electromagnetic fields[M]. Geneva, Switzerland: World Health Organization, 2002.
  • 4International Commission on Non-ionizing Radiation Protection. Guidelines for limiting exposure to time varying electric, mag- netic and electromagnetic fields (up to 300 GHz) [J]. Health Physics, 1998, 74(4): 494-522.
  • 5IEEE International Committee on Electromagnetic Safety on Non-ionizing Radiation. IEEE Std C95. 6 IEEE standard for safety levels with respect to human exposure to electromagnetic fields, 0-3 kHz [S], 2002.
  • 6International Commission on Non-ionizing Radiation Protection. Guidelines for limiting exposure to time-varying electric and magnetic fields (1 Hz-100 kHz) [J]. Health Physics, 2010, 99(6) : 818-836.
  • 7International Commission on Non ionizing Radiation Protection. Fact sheet on the guidelines for limiting exposure to time-var- ying electric and magnetic fields (1 Hz- 100 kHz) [R/OL]. Oberschleissheim, Germany: International Commission on Non- ionizing Radiation Protection, 2010 [ 2010-11-25 ]. http:// www. icnirp, de/.
  • 8GB8702-1988电磁辐射防护规定[S].北京:中国标准出版社,1988.
  • 9Kheifets Leeka I, Hester Gordon L, Baneriee Gall L. The pre- cautionary principle and EMF: implementation and evaluation [J]. Journal of Risk Research, 2000, 4(2) : 113-125.
  • 10Myron Maslanyj, Tracy Lightfoot, Joachim Schuz, et al. A precautionary public health protection strategy for the possible risk of childhood leukaemia from exposure to power frequency magnetic fields[J]. BioMed Central Public Health, 2010, 10: 673.

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