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Conductivity Affects Nanosecond Electrical Pulse Induced Pressure Transient Formation

机译:电导率影响纳秒电脉冲感应的压力瞬变形成

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摘要

Nanoporation occurs in cells exposed to high amplitude short duration (< 1μs) electrical pulses. The biophysical mechanism(s) responsible for nanoporation is unknown although several theories exist. Current theories focus exclusively on the electrical field, citing electrostriction, water dipole alignment and/or electrodeformation as the primary mechanisms for pore formation. Our group has shown that mechanical forces of substantial magnitude are also generated during nsEP exposures. We hypothesize that these mechanical forces may contribute to pore formation. In this paper, we report that alteration of the conductivity of the exposure solution also altered the level of mechanical forces generated during a nsEP exposure. By reducing the conductivity of the exposure solutions, we found that we could completely eliminate any pressure transients normally created by nsEP exposure. The data collected for this proceeding does not definitively show mat the pressure transients previously identified contribute to nanoporation; however; it indicates that conductivity influences both survival and pressure transient formation.
机译:纳米穿孔发生在暴露于高振幅短持续时间(<1μs)电脉冲的细胞中。尽管存在几种理论,但负责纳米穿孔的生物物理机制尚不清楚。当前的理论仅集中于电场,将电致伸缩,水偶极排列和/或电形成作为孔形成的主要机理。我们的小组表明,在nsEP暴露过程中也会产生相当大的机械力。我们假设这些机械力可能有助于孔的形成。在本文中,我们报道了曝光溶液电导率的改变也改变了nsEP曝光过程中产生的机械力的水平。通过降低暴露溶液的电导率,我们发现我们可以完全消除nsEP暴露通常产生的任何压力瞬变。此过程中收集的数据并未明确显示先前确定的压力瞬变有助于纳米穿孔。然而;它表明电导率会影响存活率和压力瞬变的形成。

著录项

  • 来源
    《Optical interactions with tissue and cells XXVII》|2016年|97060V.1-97060V.8|共8页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    School of Medicine, Dept. of Radiological Sciences, University of Texas Health Science Center San Antonio, 7703 Floyd Curl Drive, San Antonio, Texas, USA 78229;

    National Research Council, Oak Ridge Institute for Science and Education, JBSA Fort Sam Houston, TX, 78234 USA;

    Radio Frequency Bioeffects Branch, Bioeffects Division, Human Effectiveness Directorate, 711th Human Performance Wing, Air Force Research Laboratory, 4141 Petroleum Road, JBSA Fort Sam Houston, Texas, USA 78234;

    Optical Radiation Bioeffects Branch, Bioeffects Division, Human Effectiveness Directorate, 711th Human Performance Wing, Air Force Research Laboratory, 4141 Petroleum Road, JBSA Fort Sam Houston, Texas, USA 78234;

    School of Medicine, Dept. of Ophthalmology, University of Texas Health Science Center San Antonio, 7703 Floyd Curl Drive, San Antonio, Texas, USA 78229;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electrodeformation; nanoporation; nanosecond electrical pulse; conductivity; mechanical stress;

    机译:电形成纳米穿孔纳秒电脉冲;电导率机械应力;
  • 入库时间 2022-08-26 13:44:42

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