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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Investigating membrane breakdown of neuronal cells exposed to nonuniform electric fields by finite-element modeling and experiments
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Investigating membrane breakdown of neuronal cells exposed to nonuniform electric fields by finite-element modeling and experiments

机译:通过有限元建模和实验研究暴露于非均匀电场的神经元细胞的膜破坏

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High electric field strengths may induce high cell membrane potentials. At a certain breakdown level the membrane potential becomes constant due to the transition from an insulating state into a high conductivity and high permeability state. Pores are thought to be created through which molecules may be transported into and out of the cell interior. Membrane rupture may follow due to the expansion of pores or the creation of many small pores across a certain part of the membrane surface. In nonuniform electric fields, it is difficult to predict the electroporated membrane area. Therefore, in this study the induced membrane potential and the membrane area where this potential exceeds the breakdown level is investigated by finite-element modeling. Results from experiments in which the collapse of neuronal cells was detected were combined with the computed field strengths in order to investigate membrane breakdown and membrane rupture. It was found that in nonuniform fields membrane rupture is position dependent, especially at higher breakdown levels. This indicates that the size of the membrane site that is affected by electroporation determines rupture.
机译:高电场强度可能会诱导高细胞膜电位。在一定的击穿水平下,膜电位由于从绝缘状态到高电导率和高磁导率状态的转变而变得恒定。人们认为产生了孔,分子可以通过孔进入细胞内部和从细胞内部移出。膜破裂可能是由于孔的膨胀或在膜表面的特定部分上形成许多小孔而引起的。在不均匀的电场中,很难预测电穿孔膜的面积。因此,在这项研究中,通过有限元建模研究了感应膜电位和该电位超过击穿水平的膜面积。将检测神经元细胞崩溃的实验结果与计算得出的场强相结合,以研究膜破裂和膜破裂。已经发现,在不均匀的区域中,膜破裂与位置有关,尤其是在较高的击穿水平下。这表明受电穿孔影响的膜部位大小决定了破裂。

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