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首页> 外文期刊>Plasma medicine. >Spatially resolved optical emission spectroscopy of a helium plasma jet and its effects on wound healing rate in a diabetic murine model
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Spatially resolved optical emission spectroscopy of a helium plasma jet and its effects on wound healing rate in a diabetic murine model

机译:氦等离子体射流的空间分辨光发射光谱及其对糖尿病小鼠模型伤口愈合速度的影响

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A spatially resolved characterization of the active species generated in a pure helium plasma plume was performed using optical emission spectroscopy techniques. A qualitative assessment of the radiative species was conducted under various experimental conditions to determine the ideal flow rate and distance along the plume for maximal species production. Nitrogen radicals dominated the emission in the spectra, though measurable amounts of oxygen and OH were also observed, with a minimal radiative contribution from the He carrier gas. Radiative species were maximized 25–30 mm distal to the outflow orifice of the plasma generator. A diabetic mouse model was then utilized to examine the effects of this pure helium plasma on the healing rates of large-area, full-thickness skin wounds. A total of 80 mice were included and were subjected to one of several treatment regimens: 30 seconds twice daily, 60 seconds twice daily, 90 seconds once daily, and helium gas control. Digital photographs were taken daily, and wound surface areas were quantified using image analysis software. Curves were then fit to daily wound surface areas to determine healing rates. Wounds healed significantly faster following plasma treatment. The maximum effect was obtained with 60-second treatments applied twice daily.
机译:使用光发射光谱技术对纯氦等离子体羽流中产生的活性物质进行空间分辨表征。在各种实验条件下,对辐射物种进行了定性评估,以确定沿着羽流的理想流速和距离,以实现最大的物种生产。氮自由基在光谱的发射中占主导地位,尽管也观察到了可测量的氧气和OH含量,He载气的辐射贡献最小。在等离子发生器流出孔的远端25–30 mm处,辐射物质最大。然后,使用糖尿病小鼠模型检查这种纯氦血浆对大面积,全层皮肤伤口愈合速度的影响。总共包括80只小鼠,并接受以下几种治疗方案之一:每天两次30秒,每天两次60秒,每天一次90秒以及氦气控制。每天拍摄数码照片,并使用图像分析软件对伤口表面积进行定量。然后将曲线拟合到每日伤口表面积,以确定治愈率。等离子治疗后伤口愈合明显加快。每天两次应用60秒的治疗,可获得最大的效果。

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