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关于设置射频接触电流限值的观点:述评。

Perspectives on setting limits for RF contact currents: a commentary.

机构信息

Richard Tell Associates, Inc., 350 Falcon Ridge Parkway, Suite 103, Mesquite, NV, 89027, USA.

出版信息

Biomed Eng Online. 2018 Jan 15;17(1):2. doi: 10.1186/s12938-018-0434-3.

Abstract

BACKGROUND

Limits for exposure to radiofrequency (RF) contact currents are specified in the two dominant RF safety standards and guidelines developed by the Institute of Electrical and Electronics Engineers (IEEE) and the International Commission on Non-Ionizing Radiation Protection (ICNIRP). These limits are intended to prevent RF burns when contacting RF energized objects caused by high local tissue current densities. We explain what contact currents are and review some history of the relevant limits with an emphasis on so-called "touch" contacts, i.e., contact between a person and a contact current source during touch via a very small contact area.

RESULTS

Contact current limits were originally set on the basis of controlling the specific absorption rate resulting from the current flowing through regions of small conductive cross section within the body, such as the wrist or ankle. More recently, contact currents have been based on thresholds of perceived heating. In the latest standard from the IEEE developed for NATO, contact currents have been based on two research studies in which thresholds for perception of thermal warmth or thermal pain have been measured. Importantly, these studies maximized conductive contact between the subject and the contact current source. This factor was found to dominate the response to heating wherein high resistance contact, such as from dry skin, can result in local heating many times that from a highly conductive contact. Other factors such as electrode size and shape, frequency of the current and the physical force associated with contact are found to introduce uncertainty in threshold values when comparing data across multiple studies.

CONCLUSIONS

Relying on studies in which the contact current is minimized for a given threshold does not result in conservative protection limits. Future efforts to develop limits on contact currents should include consideration of (1) the basis for the limits (perception, pain, tissue damage); (2) understanding of the practical conditions of real world exposure for contact currents such as contact resistance, size and shape of the contact electrode and applied force at the point of contact; (3) consistency of how contact currents are applied in research studies across different researchers; (4) effects of frequency.

摘要

背景

射频(RF)接触电流的暴露限值在由电气和电子工程师协会(IEEE)和国际非电离辐射防护委员会(ICNIRP)制定的两个占主导地位的射频安全标准和指南中有所规定。这些限值旨在防止因高局部组织电流密度而接触 RF 通电物体时发生 RF 灼伤。我们解释了接触电流是什么,并回顾了相关限值的一些历史,重点介绍了所谓的“触摸”接触,即人在通过非常小的接触面积触摸接触电流源时与接触电流源的接触。

结果

接触电流限值最初是根据流经身体小导电横截面区域(如手腕或脚踝)的电流产生的比吸收率设定的。最近,接触电流的设定则基于感知加热的阈值。在为北约开发的最新 IEEE 标准中,接触电流是基于两项研究,其中测量了感知热温暖或热痛的阈值。重要的是,这些研究最大限度地提高了主体与接触电流源之间的导电接触。发现这一因素在加热反应中起主导作用,其中高电阻接触(如干燥皮肤)可能导致局部加热是高导电性接触的许多倍。电极尺寸和形状、电流频率以及与接触相关的物理力等其他因素在比较多个研究的数据时会导致阈值值存在不确定性。

结论

依赖于给定阈值下接触电流最小化的研究不会产生保守的保护限值。未来制定接触电流限值的工作应包括考虑以下因素:(1)限值的基础(感知、疼痛、组织损伤);(2)了解实际情况下接触电流的暴露情况,例如接触电阻、接触电极的尺寸和形状以及接触点的作用力;(3)在不同研究人员之间如何应用接触电流的研究在研究中的一致性;(4)频率的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bde1/5769355/3b522a8ddeb2/12938_2018_434_Fig1_HTML.jpg

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