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冷大气压等离子体梳 - 一种治疗头虱的物理方法。

Cold Atmospheric Pressure Plasma Comb-A Physical Approach for Pediculosis Treatment.

机构信息

University of Applied Sciences and Arts HAWK, Faculty N, Von-Ossietzky-Strasse 99/100, 37085 Göttingen, Germany.

German Environment Agency, Corrensplatz 1, 14195 Berlin, Germany.

出版信息

Int J Environ Res Public Health. 2018 Dec 21;16(1):19. doi: 10.3390/ijerph16010019.

Abstract

Pediculosis, that is the infestation of humans with (head lice), poses a worldwide problem that is as old as mankind itself. Over the centuries, man has developed a variety of remedies, all of which have ultimately culminated in the use of chemical agents. Some of these remedies are known to produce successful results. A large portion of the effective remedies used to kill lice and their eggs contain insecticides, but there is an increasing number of reports of head lice populations revealing an increased resistance. This study presents an alternative treatment approach, the efficacy of which is based on physical effects. Cold atmospheric pressure plasmas have successfully shown their formidably wide application range within the field of plasma medicine. This study presents a plasma device in its current stage of development that is engineered as a consumer product to enable an alternative physical and insecticide-free option for the treatment of pediculosis. An efficacy study concerning different developmental stages of is presented. was chosen as a substitute test organism for due to possible laboratory rearing and high anatomic similarity. The study shows how a single stroke of the plasma device over a hair strand (approximately 22 cm in length with a weight of 1.5 g) led to mortality rates of 68.3% (50.0; 79.7) (95% CI) in the juvenile test group, a mortality rate of approx. 67.7% (54.9; 78.8) (95% CI) in the female test group, and approx. 46.7% (28.3; 65.7) (95% CI) in the male test group. When single eggs were introduced directly into the plasma for approx. 1 s, younger eggs (0⁻2 d) showed a higher mortality of 66.7% (42.7; 82.7) than the older (4⁻6 d) eggs, with 16.7% (5.6; 34.7) (CI). Furthermore, the results of a risk assessment of the device are described. The article concludes with necessary handling instructions as well as further developmental steps, derived from the results of the efficacy and the risk assessment study.

摘要

头虱病,即人类被(头虱)寄生,是一个全球性的问题,其历史与人类本身一样悠久。几个世纪以来,人类开发了各种疗法,最终都归结为使用化学制剂。其中一些疗法已被证明是有效的。许多用于杀死虱子及其卵的有效疗法都含有杀虫剂,但越来越多的报告显示,虱子种群的抗药性有所增加。本研究提出了一种替代治疗方法,其疗效基于物理效应。冷大气压等离子体在等离子体医学领域已经成功地展示了其广泛的应用范围。本研究介绍了一种处于开发阶段的等离子体装置,该装置被设计为消费产品,为头虱病的治疗提供了一种非药物和非杀虫剂的替代选择。本研究介绍了一项针对不同发育阶段的功效研究。由于可能在实验室中饲养和高度的解剖相似性,选择 作为替代测试生物体。研究表明,单个等离子体装置在一根头发上划过(大约 22 厘米长,重 1.5 克),可使幼虫实验组的死亡率达到 68.3%(50.0;79.7)(95%置信区间),雌性实验组的死亡率约为 67.7%(54.9;78.8)(95%置信区间),雄性实验组的死亡率约为 46.7%(28.3;65.7)(95%置信区间)。当单个卵直接放入等离子体中约 1 秒时,较年轻的卵(0⁻2 天)的死亡率为 66.7%(42.7;82.7),比较老的卵(4⁻6 天)高,而较老的卵的死亡率为 16.7%(5.6;34.7)(置信区间)。此外,还描述了设备风险评估的结果。本文以功效和风险评估研究的结果为基础,总结了必要的操作说明和进一步的开发步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d3c/6338894/af837eab38c0/ijerph-16-00019-g001.jpg

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