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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Plasma gun for medical applications: engineering an equivalent electrical target of the human body and deciphering relevant electrical parameters
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Plasma gun for medical applications: engineering an equivalent electrical target of the human body and deciphering relevant electrical parameters

机译:用于医疗应用的等离子枪:工程人体的等效电气目标和解密相关的电气参数

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Simulations and experimental works have been carried out in a complementary way to engineer a basic material target mimicking the same dielectric properties of the human body. It includes a resistor in parallel with a capacitor, whose values (R-h = 1500 Omega and C-h = 100 pF) are estimated in regard of parameters commonly utilized upon in vivo campaigns (frequency = 30 kHz, gap = 10mm, high voltage electrode surface = 12.6mm(2)). This equivalent electrical human body (EEHB) circuit can be used as a reference and realistic target to calibrate electrical properties of therapeutic plasma sources before their utilization on patients. In this letter, we consider a configuration where this FEHB target interacts with a plasma gun. Plasma power measurements performed in such configuration clearly indicate two operating modes depending on the value of the supplied voltage. Hence, the plasma gun generates pulsed atmospheric plasma streams likely to present therapeutic interest for voltages comprised between 3.0 and 8.5 kV while for higher values, transient arcs of thermal plasma are generated and represent substantial risks for the patient.
机译:已经以互补的方式进行模拟和实验工程,用于工程师模拟人体相同的介电性质的基本材料目标。它包括与电容器并联的电阻,其值(RH = 1500 omega和CH = 100PF)估计在体内运动中通常使用的参数(频率= 30kHz,间隙= 10mm,高压电极表面= 12.6mm(2))。该等效电气人体(EEHB)电路可用作参考和现实靶标以在它们对患者的利用率之前校准治疗性等离子体源的电性能。在这封信中,我们考虑这种FEHB目标与等离子枪相互作用的配置。在这种配置中执行的等离子体功率测量清楚地表示两个操作模式,这取决于所提供的电压的值。因此,等离子体枪产生可能对3.0至8.5kV之间的电压提供治疗兴趣的脉冲大气等离子体流,而对于较高的值,产生的热等离子体的瞬态弧产生并表示患者的基本风险。

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