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A Review on Molecular Dynamics Simulation for Biological Effects of Pulsed Electric Field

机译:脉冲电场生物效应的分子动力学模拟研究进展

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In recent years, the electric field in the application of biological research has become a hot spot, However, the mechanism still lags behind the experimental study. Molecular dynamics simulation could not only get the atomic trajectory, but also get a variety of observation like to do the same experiment. Therefore we could choose molecular dynamics simulation to study the mechanism. This article discusses the basic principles of the molecular dynamics simulation; Comprehensive analysis research status and recent applications of Molecular dynamics simulation in electric field biological effect at home and abroad. In particular, we have a detailed description and analysis of the biological effects of pulsed electric field of molecular dynamics simulation results, such as nanopore formation at membranes in response to a high-intensity (~0.5Vm), nanosecond electric pulse. And On this basis, the development trends and application prospects of molecular dynamics simulation on pulsed electric field in the biological effects is put forward.
机译:近年来,电场在生物研究中的应用已成为热点,然而,其机理仍落后于实验研究。分子动力学模拟不仅可以得到原子轨迹,而且还可以像进行相同的实验一样获得各种观察结果。因此我们可以选择分子动力学模拟来研究其机理。本文讨论了分子动力学模拟的基本原理。分子动力学模拟在国内外电场生物效应中的综合分析研究现状及最新应用。特别是,我们对分子动力学模拟结果的脉冲电场的生物效应进行了详细的描述和分析,例如响应高强度(〜0.5V / nm)纳秒电脉冲的膜上形成纳米孔。并在此基础上,提出了脉冲电场在生物效应中分子动力学模拟的发展趋势和应用前景。

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