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Power density measurements to optimize AC plasma jet operation in blood coagulation

机译:功率密度测量可优化血液凝固中的AC等离子喷射操作

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摘要

In this paper, the plasma power density and corresponding plasma dose of a low-cost air non-thermal plasma jet (ANPJ) device are estimated at different axial distances from the nozzle. This estimation is achieved by measuring the voltage and current at the substrate using diagnostic techniques that can be easily made in laboratory; thin wire and dielectric probe, respectively. This device uses a compressed air as input gas instead of the relatively-expensive, large-sized and heavy weighed tanks of Ar or He gases. The calculated plasma dose is found to be very low and allows the presented device to be used in biomedical applications (especially blood coagulation). While plasma active species and charged-particles are found to be the most effective on blood coagulation formation, both air flow and UV, individually, do not have any effect. Moreover, optimal conditions for accelerating blood coagulation are studied. Results showed that, the power density at the substrate is shown to be decreased with increasing the distance from the nozzle. In addition, both distances from nozzle and air flow rate play an important role in accelerating blood coagulation process. Finally, this device is efficient, small-sized, safe enough, of low cost and, hence, has its chances to be wide spread as a first aid and in ambulance.
机译:在本文中,在距喷嘴的不同轴向距离处估算了低成本空气非热等离子体喷射(ANPJ)设备的等离子体功率密度和相应的等离子体剂量。这种估计是通过使用诊断技术测量衬底上的电压和电流来实现的,诊断技术可以在实验室中轻松实现。细线和介电探针。该设备使用压缩空气作为输入气体,而不是使用相对昂贵,大型且重量较重的Ar或He气罐。发现计算出的血浆剂量非常低,并且使得所提出的装置可以用于生物医学应用(尤其是血液凝结)。虽然发现血浆活性物质和带电粒子对凝血形成最有效,但气流和紫外线单独都没有任何作用。此外,研究了加速血液凝固的最佳条件。结果表明,基板上的功率密度显示为随着距喷嘴距离的增加而降低。此外,距喷嘴的距离和空气流速在加速血液凝固过程中都起着重要作用。最后,该装置是有效的,小型的,足够安全的,低成本的,因此,它有可能作为急救和救护车而广泛传播。

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