Effect of Mobile Phone-Induced Electromagnetic Field on Brain Hemodynamics and Human Stem Cell Functioning: Possible Mechanistic Link to Cancer Risk and Early Diagnostic Value of Electronphotonic Imaging.

Q4 Biochemistry, Genetics and Molecular Biology Journal of Stem Cells Pub Date : 2015-01-01 DOI:jsc.2015.10.4.287
Hemant Bhargav, T M Srinivasan, S Varambally, B N Gangadhar, Prasad Koka
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Abstract

The mobile phones (MP) are low power radio devices which work on electromagnetic fields (EMFs), in the frequency range of 900-1800 MHz. Exposure to MPEMFs may affect brain physiology and lead to various health hazards including brain tumors. Earlier studies with positron emission tomography (PET) have found alterations in cerebral blood flow (CBF) after acute exposure to MPEMFs. It is widely accepted that DNA double-strand breaks (DSBs) and their misrepair in stem cells are critical events in the multistage origination of various leukemia and tumors, including brain tumors such as gliomas. Both significant misbalance in DSB repair and severe stress response have been triggered by MPEMFs and EMFs from cell towers. It has been shown that stem cells are most sensitive to microwave exposure and react to more frequencies than do differentiated cells. This may be important for cancer risk assessment and indicates that stem cells are the most relevant cellular model for validating safe mobile communication signals. Recently developed technology for recording the human bio-electromagnetic (BEM) field using Electron photonic Imaging (EPI) or Gas Discharge Visualisation (GDV) technique provides useful information about the human BEM. Studies have recorded acute effects of Mobile Phone Electromagnetic Fields (MPEMFs) using EPI and found quantifiable effects on human BEM field. Present manuscript reviews evidences of altered brain physiology and stem cell functioning due to mobile phone/cell tower radiations, its association with increased cancer risk and explores early diagnostic value of EPI imaging in detecting EMF induced changes on human BEM.

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手机电磁场对大脑血流动力学和人类干细胞功能的影响:与癌症风险的可能机制联系和电子光子成像的早期诊断价值。
移动电话(MP)是工作在电磁场(emf)上的低功率无线电设备,频率范围为900- 1800mhz。接触强电磁场可能影响大脑生理,并导致包括脑肿瘤在内的各种健康危害。早期的正电子发射断层扫描(PET)研究发现急性暴露于mmpemfs后脑血流量(CBF)发生改变。干细胞中DNA双链断裂(DSBs)及其错误修复是多种白血病和肿瘤(包括脑肿瘤如胶质瘤)多阶段起源的关键事件,这一观点已被广泛接受。mmpemfs和来自信号塔的EMFs均可触发DSB修复中的显著失衡和严重的应激反应。研究表明,干细胞对微波辐射最敏感,比已分化的细胞对更多频率的微波辐射有反应。这可能对癌症风险评估很重要,并表明干细胞是验证安全移动通信信号最相关的细胞模型。最近发展起来的利用电子光子成像(EPI)或气体放电可视化(GDV)技术记录人体生物电磁(BEM)场的技术提供了有关人体生物电磁(BEM)的有用信息。研究利用EPI记录了手机电磁场的急性效应,并发现了可量化的对人体BEM场的影响。本文综述了移动电话/手机发射塔辐射导致的脑生理和干细胞功能改变的证据,其与癌症风险增加的关系,并探讨了EPI成像在检测电磁场引起的人类BEM变化方面的早期诊断价值。
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来源期刊
Journal of Stem Cells
Journal of Stem Cells Medicine-Transplantation
CiteScore
0.10
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发文量
1
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