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On the modeling and analysis of the RF exposure on biological systems: A potential treatment strategy for neurodegenerative diseases

机译:关于射频在生物系统上的建模与分析:神经退行性疾病的潜在治疗策略

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摘要

Mobile communication devices, body area networks, monitoring systems, and diagnostic and therapeutic tools are based on radio frequency emissions, raising the public concern on the possible negative effects on the human health. The future is also oriented towards the use of in-body (nano) sensors for medical applications. Biological alterations caused by non-therma induced effects have currently been under investigation and experimental results on long-term effects are often discordant. To this end, recent experiments on transgenic Alzheimer mice revealed a progressive regression of the neurodegenerative disease after controlled exposure to mobile phone radiations. Therefore, the importance of understanding the RF-induced effects on the neuronal activity is twofold. Future wireless devices can be designed minimizing unhealthy effects whereas novel RF-based diagnostic and treatment devices for neurodegenerative diseases can be envisaged (in-body micro and nano-sensors and non-invasive techniques). In this paper, we propose an alternative approach in the investigation of such hidden biological mechanisms, where traditional concepts from radio communications are applied to neuroscience. The interaction of RF sources with the neuronal activity is the key point as well as the information exchanged in neuronal networks and the small-world topology of such network, heavily altered in Alzheimer patients.
机译:移动通信设备,人体局域网,监视系统以及诊断和治疗工具均基于射频发射,引起了公众对可能对人体健康造成负面影响的关注。未来还将面向在医疗应用中使用体内(纳米)传感器。由非热诱导作用引起的生物学改变目前正在研究中,长期作用的实验结果常常不一致。为此,最近对转基因阿尔茨海默病小鼠进行的实验表明,在受控暴露于手机辐射后,神经退行性疾病逐渐退化。因此,了解RF诱导的神经元活动影响的重要性是双重的。可以设计未来的无线设备,以最大程度地减少不健康的影响,而可以设想用于神经退行性疾病的新型基于RF的诊断和治疗设备(体内微型和纳米传感器以及非侵入性技术)。在本文中,我们提出了另一种方法来研究这种隐藏的生物学机制,其中将无线电通信中的传统概念应用于神经科学。射频源与神经元活动的相互作用是关键点,也是神经元网络和此类网络的小世界拓扑结构(在阿尔茨海默病患者中发生严重变化)交换的信息。

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  • 来源
    《Nano communication networks》 |2012年第2期|p.103-115|共13页
  • 作者单位

    Department of Electronics and Telecommunications, Norwegian University of Science and Technology (NTNU), Norway;

    Intervention Centre, Oslo University Hospital, Norway,institute of Clinical Medicine, University of Oslo, Norway;

    Department of Electronics and Telecommunications, Norwegian University of Science and Technology (NTNU), Norway,Intervention Centre, Oslo University Hospital, Norway,institute of Clinical Medicine, University of Oslo, Norway;

    Department of Electronics and Telecommunications, Norwegian University of Science and Technology (NTNU), Norway,Intervention Centre, Oslo University Hospital, Norway,institute of Clinical Medicine, University of Oslo, Norway;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    rf exposure; biological effects; small-world networks; neuronal connectivity; alzheimer's disease;

    机译:射频暴露生物效应;小世界网络;神经元连通性;阿尔茨海默氏病;

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