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Non-Thermal Atmospheric Dielectric Barrier Discharge Plasma, Medical Application Studies in Thailand

机译:泰国的非热大气介质屏障放电等离子体,医学应用研究

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Atmospheric Dielectric Barrier Discharge (DBD) plasma development is one of the most interesting subjects to our group. Fridman et al.* has concluded that Floating DBD Direct Plasma are more effective in bactericidal property, it contains higher free charged particles than indirect type. DBD plasma sources can provide low temperature or non-thermal (cold) plasmas, and these plasmas can be created with ambient air or with a noble gas, such as helium or argon, as the carrier medium. It can be used with an electrode as a contact or non-contact method to target a tissue. However, the drawback of direct DBD plasma is that it will work only in short gap distances, on the order of a few millimeters. Our group has investigated the clinical safety and efficacy of a novel DBD non-thermal atmospheric plasma source (BIO-PLASMA Cell Modulation: PhotoBioCare, Thailand). The major area has been focused on its bactericidal disinfection property, application in common dermatologic problems, in skin aesthetic facial rejuvenation and chronic wound management, from 2012 to 2016.
机译:大气介电屏障放电(DBD)等离子发展是我们集团最有趣的科目之一。 Fridman等人。*已经得出结论,浮动DBD直接等离子体在杀菌性质中更有效,它含有比间接型更高的无用带电粒子。 DBD等离子体源可以提供低温或非热(冷)等离子体,并且这些等离子体可以用环境空气或具有诸如氦气或氩气的惰性气体,作为载体介质。它可以与电极一起使用,作为靶向组织的接触或非接触方法。然而,直接DBD等离子体的缺点是它仅在短间隙距离上工作,大约几毫米。我们的小组研究了一种新型DBD非热大气血浆源(生物血浆细胞调制:Photobiocare,泰国)的临床安全性和有效性。 2012年至2016年,主要领域一直专注于其杀菌消毒性能,在皮肤审美面部复活和慢性伤口管理中的常见皮肤病问题。

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