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Use of Ultrasonic Energy in Assessing Microbial Contamination on Surfaces

机译:使用超声波能量评估表面的微生物污染

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摘要

Ultrasonic tanks were evaluated for their ability to remove viable microorganisms from various surfaces for subsequent enumeration. Test surfaces were polished stainless steel, smooth glass, frosted glass, and electronic components. The position of contaminated surfaces in relation to the ultrasonic energy source, distance of the ultrasonic source from the test surfaces, and temperature of the rinse fluid were some of the factors which influenced recovery. Experimental systems included both naturally occurring microbial contamination and artificial contamination with spores of Bacillus subtilis var. niger. The results showed that ultrasonic energy was more reliable and efficient than mechanical agitation for recovering surface contaminants. Conditions which increased the number and percentage of microorganisms recovered by ultrasonic energy were: using a cold rinse fluid, placing the sample bottle on the bottom of the ultrasonic tank, and facing the contaminated surfaces toward the energy source. It was also demonstrated that ultrasonic energy could be effectively used for eluting microorganisms from cotton swabs.
机译:评估超声波罐从各种表面去除活微生物以进行后续计数的能力。测试表面为抛光不锈钢,光滑玻璃,毛玻璃和电子元件。污染表面相对于超声能量源的位置,超声源与测试表面的距离以及冲洗液的温度是影响回收率的一些因素。实验系统包括自然发生的微生物污染和枯草芽孢杆菌孢子的人工污染。尼日尔。结果表明,超声能比机械搅拌能更可靠,更有效地回收表面污染物。增加通过超声能量回收的微生物的数量和百分比的条件是:使用冷冲洗液,将样品瓶放在超声罐的底部,并使污染的表面面向能源。还证明了超声能可有效地用于从棉签中洗脱微生物。

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