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Study of the role of dielectric material in a dielectric barrier discharge (DBD) plasma source for dermatological applications

机译:研究介电材料在皮肤病学应用中介电阻挡放电(DBD)血浆源的作用

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The development of low temperature plasma sources operating at atmospheric pressure is opening a new world of possible biomedical applications. In order to attain uniform treatments and avoid localized temperature peaks, a diffused plasma condition is generally desirable for this kind of applications. In this study two different dielectric materials, borosilicate glass and polystyrene, are evaluated for the realization of a particular plasma source (PlasmaSkin) developed for dermatological treatments. The influence of the dielectric material on the characteristics of the generated plasma and on the temperature reached by the dielectric surface are studied by means of High Speed Imaging technique and fiber optic temperature sensors respectively. Results obtained provide useful insights for the determination of the best material for the development of a plasma source for dermatological applications.
机译:在大气压下运行的低温等离子体源的发展正在开辟一个可能的生物医学应用的新世界。为了获得均匀的处理并避免局部温度峰值,对于这种应用,通常希望扩散的等离子体条件。在这项研究中,评价两种不同的介电材料,硼硅酸盐玻璃和聚苯乙烯,以实现为皮肤病学治疗产生的特定血浆源(Plasmaskin)。通过高速成像技术和光纤温度传感器研究了介电材料对产生的等离子体的特性和介电表面达到的温度的影响。获得的结果提供了用于测定用于开发皮肤病学应用的血浆源的最佳材料的有用见解。

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