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强度、暴露持续时间和调制对射频辐射生物效应的作用及暴露指南。

The roles of intensity, exposure duration, and modulation on the biological effects of radiofrequency radiation and exposure guidelines.

作者信息

Lai Henry, Levitt B Blake

机构信息

Department of Bioengineering, University of Washington, Seattle, WA, USA.

New Preston, CT, USA.

出版信息

Electromagn Biol Med. 2022 Apr 3;41(2):230-255. doi: 10.1080/15368378.2022.2065683. Epub 2022 Apr 19.

Abstract

In this paper, we review the literature on three important exposure metrics that are inadequately represented in most major radiofrequency radiation (RFR) exposure guidelines today: intensity, exposure duration, and signal modulation. Exposure intensity produces unpredictable effects as demonstrated by nonlinear effects. This is most likely caused by the biological system's ability to adjust and compensate but could lead to eventual biomic breakdown after prolonged exposure. A review of 112 low-intensity studies reveals that biological effects of RFR could occur at a median specific absorption rate of 0.0165 W/kg. Intensity and exposure duration interact since the dose of energy absorbed is the product of intensity and time. The result is that RFR behaves like a biological "stressor" capable of affecting numerous living systems. In addition to intensity and duration, man-made RFR is generally modulated to allow information to be encrypted. The effects of modulation on biological functions are not well understood. Four types of modulation outcomes are discussed. In addition, it is invalid to make direct comparisons between thermal energy and radiofrequency electromagnetic energy. Research data indicate that electromagnetic energy is more biologically potent in causing effects than thermal changes. The two likely functionthrough different mechanisms. As such, any current RFR exposure guidelines based on acute continuous-wave exposure are inadequate for health protection.

摘要

在本文中,我们回顾了有关三种重要暴露指标的文献,而这些指标在当今大多数主要的射频辐射(RFR)暴露指南中并未得到充分体现:强度、暴露持续时间和信号调制。正如非线性效应所表明的,暴露强度会产生不可预测的影响。这很可能是由生物系统的调节和补偿能力导致的,但长期暴露后可能会导致最终的生物分子崩溃。对112项低强度研究的综述表明,RFR的生物效应可能在比吸收率中位数为0.0165瓦/千克时出现。强度和暴露持续时间相互作用,因为吸收的能量剂量是强度和时间的乘积。结果是,RFR表现得像一种能够影响众多生物系统的生物“应激源”。除了强度和持续时间外,人造RFR通常会被调制以实现信息加密。调制对生物功能的影响尚未得到充分理解。本文讨论了四种调制结果。此外,直接比较热能和射频电磁能是无效的。研究数据表明,电磁能在产生效应方面比热变化在生物学上更具效力。两者可能通过不同的机制起作用。因此,任何基于急性连续波暴露的现行RFR暴露指南都不足以保护健康。

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