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DYNAMICS AND CONTROL OF ELECTROPORATION

机译:电动力学与控制

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摘要

Electroporation has become an important tool for drug delivery such as gene therapy. The technique uses electric pulses to create transient pores in the cell membrane. To ensure proper uptake of targeted molecules, it is essential to create sufficiently large pores, which remain open long enough. In this work, we explore evolution of the pores using dynamical analysis and control of electroporation based on a simplified two-dimensional model. A detailed bifurcation analysis reveals the existence of saddle-node bifurcations, which induce hysteresis into the system dynamics. The bifurcation analysis also sheds light on the relation between the applied voltage and the pore radius. Based on the dynamics and bifurcation analysis, we design a feedback control algorithm that is able to achieve any desired pore size. Numerical examples demonstrate the control strategy is robust. The control algorithm will improve the operation of electroporation in drug delivery.
机译:电穿孔已成为诸如基因疗法之类的药物递送的重要工具。该技术使用电脉冲在细胞膜上产生瞬时孔。为了确保适当吸收目标分子,必须创建足够大的孔,这些孔保持足够长的开放时间。在这项工作中,我们使用动力学分析和基于简化二维模型的电穿孔控制来探索孔的演化。详细的分叉分析揭示了鞍形节点分叉的存在,该分叉会导致系统动力学产生滞后现象。分叉分析还阐明了施加电压和孔半径之间的关系。基于动力学和分叉分析,我们设计了一种能够实现任何所需孔径的反馈控制算法。数值算例表明了该控制策略的鲁棒性。该控制算法将改善药物递送中电穿孔的操作。

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