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Atmospheric Pressure Microwave Plasma Torch for Biomedical Applications

机译:用于生物医学应用的大气压微波等离子体炬

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During the past decade, cold plasma sources have gained much attention regarding biomedical applications. The large spectrum of observed effects (programmed cell death, bacterial inactivation, wound healing, etc.) has encouraged scientists to create and use different plasma sources operating at atmospheric pressure. The preferred plasma device to this point has been dielectric barrier discharges. In this work, we present well-known surface-wave-sustained microwave discharge operating at 2.45 GHz. This atmospheric pressure plasma torch can sustain low gas temperature at relatively low gas flow and power output, which makes it suitable for working with different model biological systems. We see a strong relationship among microwave power, torch length, and gas temperature. Moreover, gas flow and tube specifications (inner diameter, wall thickness, and dielectric permittivity) vary temperature and length of discharge. The purpose of this work is to precisely determine the working conditions at which this plasma source can be used in direct contact with biological objects.
机译:在过去十年中,冷等离子体源对生物医学应用有很大的关注。观察到的效果(编程细胞死亡,细菌灭活,伤口愈合等)令人鼓舞的是,科学家们鼓励科学家在大气压力下制造和使用不同的等离子体源。本点的优选等离子体器件已经是介电阻挡放电。在这项工作中,我们呈现出在2.45GHz的众所周知的表面波持续微波放电。这种大气压等离子体炬可以在相对较低的气体流量和功率输出处维持低气体温度,这使得适用于使用不同的模型生物系统。我们看到微波功率,火炬长度和气体温度之间的牢固关系。此外,气流和管规格(内径,壁厚和介电介电常数)变化温度和放电长度。该工作的目的是精确地确定该等离子体源可与生物物体直接接触的工作条件。

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