首页> 外文期刊>IEEE Transactions on Plasma Science >Surgical Instrument Decontamination: Efficacy of Introducing an Argon:Oxygen RF Gas-Plasma Cleaning Step as Part of the Cleaning Cycle for Stainless Steel Instruments
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Surgical Instrument Decontamination: Efficacy of Introducing an Argon:Oxygen RF Gas-Plasma Cleaning Step as Part of the Cleaning Cycle for Stainless Steel Instruments

机译:外科手术器械净化:引入Argon:Oxygen RF气体-等离子体清洗步骤作为不锈钢器械清洗周期的一部分的功效

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摘要

The decontamination of a range of “in-use” stainless steel surgical instruments by conventional hospital reprocessing techniques was studied, using scanning electron microscopic (SEM) and energy dispersive X-ray spectroscopic (EDX) analyses, with results obtained when an$hboxAr!:!hboxO_2$RF gas-plasma treatment step was added to the cleaning cycle. In some cases, protein contaminants were still retained on instruments subjected to conventional cleaning and sterilization after seven cleaning cycles. No retention of contamination was evident on the surfaces of instruments that were subjected to gas-plasma cleaning. The efficacy of the plasma decontamination is significantly improved by hydration of the tissue residues immediately before exposure to the plasma. The reasons for this are not known, but it is suggested that the production of excited OH radicals and H atoms within the tissue matrix may play some part. Deposition of fluorescently labeled protein from physiological saline solution shows that protein is incorporated into salt crystals formed on stainless steel surfaces. This protein is resistant to plasma etching, but it is shown that water treatment results in improved cleaning. A combination of effects including physical “cracking” of the salt crystals under vacuum and dissolution of the inorganic matrix, which could possibly be accelerated by dipolar heating of the aqueous phase, may be responsible.
机译:使用扫描电子显微镜(SEM)和能量色散X射线光谱(EDX)分析技术,研究了通过常规医院后处理技术对一系列“使用中”的不锈钢手术器械进行的去污处理,并获得了结果。 :!hboxO_2 $ RF气体等离子体处理步骤已添加到清洗循环中。在某些情况下,经过七个清洗周期后,蛋白质污染物仍保留在经过常规清洗和消毒的器械上。在进行了等离子体清洁的仪器表面上没有明显的污染保留。通过立即在暴露于血浆之前将组织残留物水合,可以大大提高血浆净化的功效。其原因尚不清楚,但建议在组织基质中产生激发的OH自由基和H原子可能起一定作用。从生理盐水溶液中沉积荧光标记的蛋白质表明,蛋白质被掺入到不锈钢表面形成的盐晶体中。该蛋白具有抗等离子腐蚀的能力,但表明水处理可改善清洁效果。可能是由盐晶体在真空下的物理“破裂”和无机基质的溶解(可能通过水相的偶极加热可能加速)共同作用的结果。

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