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The influence of skeletal muscle anisotropy on electroporation: in vivo study and numerical modeling

机译:骨骼肌各向异性对电穿孔的影响:体内研究和数值模拟

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摘要

The aim of this study was to theoretically and experimentally investigate electroporation of mouse tibialis cranialis and to determine the reversible electroporation threshold values needed for parallel and perpendicular orientation of the applied electric field with respect to the muscle fibers. Our study was based on local electric field calculated with three-dimensional realistic numerical models, that we built, and in vivo visualization of electroporated muscle tissue. We established that electroporation of muscle cells in tissue depends on the orientation of the applied electric field; the local electric field threshold values were determined (pulse parameters: 8 × 100 μs, 1 Hz) to be 80 V/cm and 200 V/cm for parallel and perpendicular orientation, respectively. Our results could be useful electric field parameters in the control of skeletal muscle electroporation, which can be used in treatment planning of electroporation based therapies such as gene therapy, genetic vaccination, and electrochemotherapy.
机译:这项研究的目的是在理论上和实验上研究小鼠胫骨胫骨的电穿孔,并确定施加电场相对于肌肉纤维的平行和垂直方向所需的可逆电穿孔阈值。我们的研究基于通过建立的三维逼真的数值模型计算的局部电场,以及电穿孔肌肉组织的体内可视化。我们确定组织中肌肉细胞的电穿孔取决于所施加电场的方向。确定平行和垂直方向的局部电场阈值(脉冲参数:8 x 100μs,1 Hz)分别为80 V / cm和200 V / cm。我们的研究结果可能是控制骨骼肌电穿孔的有用电场参数,可用于基于电穿孔疗法的治疗规划,例如基因疗法,基因疫苗接种和电化学疗法。

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