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Charaterization Of A Plasma Source Used To Accelerate Wound Healing Of The Tadpole Xenopus Laevis*

机译:用于加速蝌蚪Xenopus Laevis * / sup>的伤口愈合的血浆源的表征

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A recent application of plasma jets has involved the healing of wounds in the tadpole species Xenopus laevis1. The indirect application of the plasma to the amputated tail of the tadpole produced a faster rate of growth, elevated reactive oxygen species in the cellular structures, and an increase in antioxidant enzymes in the regenerate compared to that of the untreated control. The plasma exposure accelerated the dynamics of the wound healing and tail regeneration through its effects on cell proliferation and differentiation, as well as, angiogenesis mediated through reactive oxygen signaling. The discharge source operated with high purity Helium gas at a flow rate of 50sccm that passed through a ?” quartz tube. A copper electrode was attached to the outer surface of the tube at a point 5.0cm from the end of the tube. Attached to the electrode was an AC power supply operating at 32kHz and 12kV. The system was operated in a regime such that the discharge was restricted to the flow region between the electrode and the exit aperture of the tube. The profiles of the emissions features were measured using a high-resolution spectrometer coupled to an CCD detector. The spectra indicated that molecular nitrogen was present within the tube in both the neutral and ionized states. OH emissions, in the wavelength region between 300-315nm, were observed inside the tube and extending outside of the quartz tube. The emission profile of the Second Positive Systems was used to calculate the vibrational temperature and it was found to be 375±50K. The rotational temperature was determined from a fitting of the Second Positive System transition at 337nm to a Boltzmann distribution and it was found to be 375±50K. The current was measured by monitoring the ground connection from a metal plate that was placed adjacent to the exit aperture of the quartz tube using a current transformer. When the system was powered without a plasma the signal consisted of a sinusoidal wave having an amplitude of less than 0.5mA at a frequency that matched the driving voltage (32kHz). When the plasma was “on” the signal consisted of an additional component superimposed on the sinusoidal wave. The additional component was a short duration (1 μs) positive current pulse (0.75mA) that appeared approximately at the time the high voltage reached its maximum value. The height of this current pulse decreased with distance from the exit aperture of the quartz tube.
机译:最近的血浆喷气机应用涉及蝌蚪种类伤口的愈合南欧府 1 。等离子体的间接施加到蝌蚪的截肢尾部产生了更快的生长速率,细胞结构中的活性氧物质升高,与未处理对照的再生中的抗氧化酶的增加。等离子体曝光通过其对细胞增殖和分化的影响加速了伤口愈合和尾部再生的动态,以及通过反应性氧信号介导的血管生成。排出源以高纯度氦气运行,流量为50°C的流速?“石英管。从管的端部将铜电极连接到管的外表面上。连接到电极是在32kHz和12kV下工作的交流电源。该系统在一个区域中操作,使得放电限于电极和管的出口孔之间的流动区域。使用耦合到CCD检测器的高分辨率光谱仪测量排放特征的轮廓。光谱表明,在中性和电离状态中存在分子氮。在管内部观察到在300-315nm之间的波长区域中的哦排放,并在石英管的外部延伸。第二个阳性系统的排放轮廓用于计算振动温度,发现它是375±50k。从337nm的第二正系统过渡的拟合确定旋转温度,以玻色子分布,发现它是375±50k。通过使用电流变压器监测从石英管的出口孔置于的金属板的地面连接来测量电流。当系统不受等离子体而没有等离子体的时,信号由正弦波组成,该正弦波以匹配驱动电压(32kHz)的频率的幅度小于0.5mA。当等离子体“开启”时,信号由叠加在正弦波上的附加成分组成。附加组件是短持续时间(1μs)正电流脉冲(0.75mA),大约在高电压达到其最大值时出现。该电流脉冲的高度随着石英管的出口孔径的距离而减小。

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