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Ultrasonic transparency of sonication tubes exposed to various frequencies: A metrological evaluation of modifications and uncertainty of acoustic pressures

机译:暴露于不同频率的超声处理管的超声透明性:声压变化和不确定性的计量评估

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摘要

Correlations between biological phenomena and ultrasonic exposure often involve mechanical and thermal effects. Cavitation proved capable of interacting with other factors, making awkward the evaluation of their individual effects. In microbiological research, the presence of a dual effect of ultrasound on microorganisms, namely bactericidal and stimulating, required development of methods enabling analysis of ultrasonic field effects, shielded from those of cavitation. This work shows how acoustic wave action may be analyzed with a metrological approach, excluding cavitational effect and measuring acoustic pressure acting upon a sonication tube. Results show how such a goal was achieved in a repeatable and reproducible way, avoiding acoustic wave degeneration. (C) 2015 Elsevier Ltd. All rights reserved.
机译:生物现象和超声波暴露之间的相关性通常涉及机械和热效应。事实证明,空化能够与其他因素相互作用,从而难以评估它们各自的作用。在微生物学研究中,超声波对微生物的双重作用(即杀菌和刺激)的存在,要求开发能够分析超声场效应的方法,以防止空化。这项工作表明如何用计量学方法分析声波作用,不包括空化效应和测量作用在超声处理管上的声压。结果表明,如何以可重复和可再现的方式实现这一目标,从而避免了声波退化。 (C)2015 Elsevier Ltd.保留所有权利。

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