New developments in cosmetic applications of electromagnetic fields: Client and occupational hazard assessment

IF 1.8 3区 生物学 Q3 BIOLOGY
Rianne Stam PhD
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引用次数: 0

Abstract

Energy-based devices are used to improve features of appearance for aesthetic reasons while avoiding more invasive methods. Examples of treatment targets are the reduction of wrinkles, sagging, unwanted skin lesions, body hair and excess fatty tissue, and the enhancement of muscle tissue. One treatment modality is the use of electromagnetic fields (EMF, 0‒300 GHz). The present work aims to give an up-to-date survey of cosmetic applications of EMF for professional use with an assessment of client and worker exposure and possible adverse effects. A systematic search was conducted for peer-reviewed articles (2007–2022), patents, premarket notifications, manufacturer data, and adverse effects reports. Five categories of cosmetic EMF device with increasing frequency were identified: sinusoid low frequency magnetic fields for lipolysis; pulsed low frequency magnetic fields for skin rejuvenation; pulsed low frequency magnetic fields for muscle building; radiofrequency EMF for lipolysis or skin rejuvenation; microwaves for hair removal or hyperhidrosis. In the vicinity of the last four device categories, there is a potential for exceeding the occupational exposure limits in the European Union EMF Directive, which could lead to nerve or muscle stimulation, burns or overheating. There are also potential hazards for clients or workers wearing active or passive medical devices. The severity of reported adverse effects increases with EMF frequency.

电磁场美容应用的新发展:客户和职业危害评估。
基于能量的设备用于改善外观特征,以达到美观的目的,同时避免采用更具侵入性的方法。治疗目标包括减少皱纹、松弛、多余的皮肤病变、体毛和多余的脂肪组织,以及增强肌肉组织。其中一种治疗方法是使用电磁场(EMF,0-300 GHz)。本研究旨在对电磁场在美容方面的专业应用进行最新调查,并对客户和工作人员接触电磁场的情况以及可能产生的不良影响进行评估。我们对同行评审文章(2007-2022 年)、专利、上市前通知、制造商数据和不良反应报告进行了系统检索。结果发现了五类频率越来越高的电磁场美容设备:用于溶脂的正弦低频磁场;用于嫩肤的脉冲低频磁场;用于增肌的脉冲低频磁场;用于溶脂或嫩肤的射频电磁场;用于脱毛或多汗症的微波。在后四类设备附近,有可能超过欧盟电磁场指令规定的职业接触限值,从而导致神经或肌肉刺激、烧伤或过热。佩戴有源或无源医疗设备的客户或工作人员也可能受到危害。报告的不良影响的严重程度随电磁场频率的增加而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bioelectromagnetics
Bioelectromagnetics 生物-生物物理
CiteScore
4.60
自引率
0.00%
发文量
44
审稿时长
6-12 weeks
期刊介绍: Bioelectromagnetics is published by Wiley-Liss, Inc., for the Bioelectromagnetics Society and is the official journal of the Bioelectromagnetics Society and the European Bioelectromagnetics Association. It is a peer-reviewed, internationally circulated scientific journal that specializes in reporting original data on biological effects and applications of electromagnetic fields that range in frequency from zero hertz (static fields) to the terahertz undulations and visible light. Both experimental and clinical data are of interest to the journal''s readers as are theoretical papers or reviews that offer novel insights into or criticism of contemporary concepts and theories of field-body interactions. The Bioelectromagnetics Society, which sponsors the journal, also welcomes experimental or clinical papers on the domains of sonic and ultrasonic radiation.
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