D'Andrea John A, Ziriax John M, Adair Eleanor R
Directed Energy Bioeffects Laboratory, Naval Health Research Center Detachment, 8315 Navy Road, Brooks City-Base, TX 78235, USA.
Prog Brain Res. 2007;162:107-35. doi: 10.1016/S0079-6123(06)62007-4.
This chapter is a short review of literature that serves as the basis for current safe exposure recommendations by ICNIRP (International Commission on Non-Ionizing Radiation Protection, 1998). and the IEEE C95.1 (IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz, 2005) for exposure to radio frequency electromagnetic radiation (RF-EMF). Covered here are topics on dosimetry, thermoregulatory responses, behavioral responses, and how these have been used to derive safe exposure limits for humans to RF-EMF. Energy in this portion of the electromagnetic spectrum, 3 kHz-300 GHz, can be uniquely absorbed and is different from ionizing radiation both in dosimetry and effects. The deposition of thermalizing energy deep in the body by exposure to RF-EMF fields provides a unique exception to the energy flows normally encountered by humans. Behavioral effects of RF-EMF exposure range from detection to complete cessation of trained behaviors. RF-EMF is detectable and can in most cases, presumably by thermal mechanisms, support aversion and disruption or complete cessation (work stoppage) of behavior. Safety standards are based on behavioral responses by laboratory animals to RF-EMF, enhanced by careful studies of human thermoregulatory responses at four specific RF frequencies, thereby providing a conservative level of protection from RF-EMF for humans.
本章是一篇文献综述,为国际非电离辐射防护委员会(ICNIRP,1998年)和IEEE C95.1(《关于人体暴露于射频电磁场(3 kHz至300 GHz)的安全水平标准》,2005年)当前提出的射频电磁辐射(RF-EMF)安全暴露建议奠定了基础。本文涵盖了剂量学、体温调节反应、行为反应等主题,以及如何利用这些内容得出人体对RF-EMF的安全暴露限值。在3 kHz至300 GHz这一电磁频谱范围内的能量能够被独特地吸收,在剂量学和效应方面均与电离辐射不同。通过暴露于RF-EMF场而在人体深部沉积的热化能量,是人类通常所遇到的能量流动的一个独特例外情况。RF-EMF暴露的行为效应范围从可检测到训练行为完全停止。RF-EMF是可检测的,并且在大多数情况下,大概是通过热机制,会导致厌恶、行为中断或完全停止(工作停顿)。安全标准基于实验动物对RF-EMF的行为反应,并通过对四个特定射频频率下人体体温调节反应的仔细研究得到强化,从而为人类提供了保守的RF-EMF防护水平。