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首页> 外文期刊>Plasma Science, IEEE Transactions on >Wound Bleeding Control by Low Temperature Air Plasma
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Wound Bleeding Control by Low Temperature Air Plasma

机译:低温空气等离子体控制伤口出血

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摘要

A portable low temperature air plasma torch was used to control bleeding from wounds. As animal models, two pigs were used in the tests: one for the plasma treatment, and the other as the untreated control. Plasma effects on the bleeding times of three types of wounds (straight cut and cross cut in the ham area, and a hole in the saphenous vein of an ear) were examined. The results were that this plasma torch shortened the bleeding time for these three types of wounds from about 3 min to 18 s, about 4 min to 13 s, and 88 s to 15 s, respectively. Emission spectroscopy of the torch was performed to explore the reactive species carried by the plasma effluent of the torch. The results show that this torch carries abundant reactive atomic oxygen (RAO), which is the dominant reactive species in the plasma effluent. RAO can activate erythrocyte–platelet interactions to enhance blood coagulation for plug formation. The present tests indicate that RAO can also penetrate through the skin surrounding the wound to block capillary blood flow to the wound.
机译:便携式低温空气等离子炬用于控制伤口出血。作为动物模型,测试中使用了两只猪:一头用于血浆处理,另一头作为未处理的对照。检查了血浆对三种伤口(火腿部位的直切口和横切口以及耳朵的隐静脉的孔)的出血时间的影响。结果是,该等离子炬将这三种类型的伤口的出血时间分别从约3分钟缩短至18 s,将约4分钟缩短至13 s,将88 s缩短至15 s。进行炬的发射光谱分析以探究炬的血浆流出物携带的反应性物质。结果表明,该炬管带有大量的反应性原子氧(RAO),这是血浆流出物中的主要反应性物质。 RAO可以激活红细胞与血小板的相互作用,以增强凝血功能,形成栓子。目前的测试表明,RAO还可以穿透伤口周围的皮肤,从而阻止毛细管血流向伤口。

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