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Interaction of Sub-Microsecond Pulsed Electric Field With Bacterial Cells

机译:细菌细胞亚微秒脉冲电场的相互作用

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In the bacterial decontamination of liquid foods, the use of a sub microsecond pulsed electric field is of significant interest because it offers advantages such as negligible thermal effects, superior energy efficiency, and a much-reduced probability of medium breakdown. The reduced pulse duration also affects the mechanism by which sub microsecond pulses inactivate bacterial cells. We provide insight into possible bacterial inactivation mechanisms by sub-microsecond electric pulse with the aid of a common bacterium-wild type Escherichia coli and its mutants. Two pulsed power sources have been designed, developed and tested-one with pulse duration of 32 ns, the other 700 ns, and both are capable of establishing sufficiently high electric field intensity. The experimental results suggest that bacterial inactivation by 700 ns pulses is due to electrical breakdown of the outer cell membrane, whereas inactivation by 32 ns pulses is possibly due to interaction with intracellular structures
机译:在细菌净化液体食品中,使用子微秒脉冲电场具有重要兴趣,因为它提供了诸如忽略的热效应,卓越能效和更低的中等突破概率的优点。降低的脉冲持续时间也影响子微秒脉冲失活细胞的机制。我们借助于常见的野生型大肠杆菌及其突变体,通过亚微秒电脉冲对可能的细菌失活机制进行了解。已经设计了两个脉冲电源,开发和测试 - 一个脉冲持续时间为32ns,另一个700ns,两者都能够建立足够高的电场强度。实验结果表明,700ns脉冲的细菌失活是由于外部电池膜的电击穿,而32 ns脉冲的失活可能是由于与细胞内结构的相互作用

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