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Disrupting bacterial spores and cells using ultrasound applied through a solid interface

机译:使用超声波施加通过固体界面来破坏细菌孢子和细胞

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DNA sample processing cartridges that perform cell lysis using ultrasound require a sonication chamber with a wall, or interface, for the transfer of ultrasonic energy to the solution. The interface must present matched impedance to the transfer of energy, yet also provide a barrier to safely contain potential hazardous biological material. The use of a thin but solid polymeric interface was studied using interfaces with a range of frequency response characteristics to the ultrasonic excitation. Measurements of ultrasonically generated acoustic pressure, visual images of cavitation, and measurements of released nucleic acid from sonicated bacterial spores and cells were used to determine the parameters for optimum transfer of ultrasound. Data and theory presented show that cell lysis is a function of the natural frequency of the interface, the preload force between the interface and the ultrasonic transducer, and the amplitude of the transducer.
机译:使用超声执行细胞裂解的DNA样品处理盒需要具有壁或界面的超声波腔,用于将超声波能量转移到溶液中。该界面必须向能源转移呈现匹配的阻抗,还提供了安全含有潜在危险生物材料的屏障。使用具有一系列频率响应特性的界面对超声波激励进行研究的使用。使用超声产生的声压,空化的视觉图像和来自超声的细菌孢子和细胞的释放核酸的测量来确定用于最佳超声的最佳转移的参数。提出的数据和理论表明,细胞裂解是界面自然频率的函数,接口和超声换能器之间的预加载力以及换能器的幅度。

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