LOW-TEMPERATURE PLASMA -A PROMISING METHOD OF REHABILITATION

M. Gerasimenko, Герасименко Марина Юрьевна, T. N. Zaitseva, Н ЗайцеваТ, I. Evstigneeva, С ЕвстигнееваИ
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引用次数: 1

Abstract

Low-temperature plasma is a partially ionized gas obtained at atmospheric pressure and having a macroscopic temperature close to the ambient temperature. The composition of the torch of low-temperature plasma includes charged particles, neutral active particles, including free radicals and particles in metastable states, as well as ultraviolet radiation. The biological effects of plasma are associated with the synergistic effect of the listed factors, each of which has a subliminal concentration that does not cause changes in the biological object. Intensive research on the use of low-temperature plasma in medicine began about 10 years ago, although some pioneering work appeared much earlier, mainly in Russia. Since the mid-2000s. in the world began to actively develop sources of gas plasma, in which the temperature of the plasma torch is reduced to the temperature of the human body. The use of such structures makes it possible to subject the treated surface to direct plasma action and to use the entire spectrum of active plasma components, including photons, electrons, ions, free radicals, and molecules in an excited state. Low-temperature plasma has a number of fundamental advantages, which include high non-specific bactericidal activity, low probability of occurrence of stable forms, the absence of ionizing radiation and highly toxic substances. The described advantages together with a comfortable temperature, relative simplicity and low cost methods, the lack of specific requirements for the treated surface make low-temperature plasma a promising method for the treatment of various pathological conditions.
低温等离子体是一种很有前途的康复方法
低温等离子体是在大气压下获得的部分电离气体,其宏观温度接近环境温度。低温等离子体火炬的组成包括带电粒子、中性活性粒子(包括自由基和亚稳态粒子)以及紫外线辐射。血浆的生物效应与所列因素的协同作用有关,每一种因素都有一个阈下浓度,不会引起生物对象的变化。关于低温等离子体在医学中的应用的深入研究始于大约10年前,尽管一些开创性的工作在更早的时候就出现了,主要是在俄罗斯。从2000年代中期开始。在世界上开始积极开发气体等离子体源,其中等离子体炬的温度降低到人体的温度。这种结构的使用使得使处理过的表面直接受到等离子体的作用成为可能,并且可以使用整个光谱的活性等离子体成分,包括光子、电子、离子、自由基和激发态的分子。低温等离子体具有许多基本优点,包括高非特异性杀菌活性,稳定形式发生的可能性低,没有电离辐射和高毒性物质。上述优点加上温度舒适,相对简单,成本低,对处理表面没有特定要求,使低温等离子体成为治疗各种病理状况的有前途的方法。
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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