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Modeling and optimization of Blumlein nanosecond pulse generator for experiments on planar lipid bilayers

机译:BLUMLEIN纳秒脉冲发生器模拟与优化平面脂质双层实验

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Although electroporation protocols are common in biomedicine and biotechnology, the fundamental molecular-scale mechanisms involved in electroporation are still not completely understood. Therefore, molecular dynamics (MD) simulations of small patches of planar lipid bilayers (PLB) and experimentally formed PLB are used to model the cell membrane and to explain the electroporation process. However, in addition to the size difference, there is also a significant time gap between this two modeling methods. MD simulates processes up to nanoseconds while experimentally formed PLB are used to detect microsecond processes. In the presented work we model and optimize Blumlein nanosecond generator with pulse forming networks (PFN) for application of nanosecond pulses on PLB, where PLB chamber electrically represents low conductance and high capacitance. Blumlein nanosecond generator with PFN is suitable for adjusting the impedance of the generator to the impedance of the load. The challenge of generating nanosecond pulses on PLB can be addressed with careful designing of the pulse generator architecture and selecting appropriate electrical components. Numerical approaches, such as SPICE, can be a great help during development of pulse generators by either verification of its configuration or defining values of electrical components in order to obtain desired pulse characteristics.
机译:虽然电穿孔方案在生物医学和生物技术中常见,但仍然没有完全理解涉及电穿孔的基本分子级机制。因此,使用平面脂质双层(PLB)的小斑块的分子动力学(MD)模拟和实验形成的PLB来模拟细胞膜并解释电穿孔过程。然而,除大小差异之外,这两个建模方法之间还存在显着的时间差距。 MD模拟到纳秒的过程,而实验形成的PLB用于检测微秒流程。在所提出的工作中,我们用脉冲形成网络(PFN)进行模型和优化Blumlein纳秒发生器,用于在PLB上施加纳秒脉冲,其中PLB室电代表低电容和高电容。具有PFN的Blumlein纳秒发生器适用于将发电机的阻抗调节到负载的阻抗。可以通过仔细设计脉冲发生器架构并选择合适的电气部件来解决在PLB上产生纳秒脉冲的挑战。通过验证其配置或限定电气部件的验证以获得所需的脉冲特性,在脉冲发生器的开发期间可以是在脉冲发生器的发展期间的巨大帮助。

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