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Electrical impedance tomography for imaging tissue electroporation.

机译:用于组织电穿孔成像的电阻抗断层扫描。

摘要

Electroporation is a method to introduce molecules, such as gene constructs or small drugs, into cells by temporarily permeating the cell membrane with electric pulses. In molecular medicine and biotechnology, tissue electroporation is performed with electrodes placed in the target area of the body. Currently, tissue electroporation, as with all other methods of molecular medicine, is performed without real-time control or near-term information regarding the extent and degree of electroporation. This paper expands the work from our previous study by implementing new ex vivo experimental data with "front-tracking" analysis for the image reconstruction algorithm. The experimental data is incorporated into numerical simulations of electroporation procedures and images are generated using the new reconstruction algorithm to demonstrate that electrical impedance tomography (EIT) can produce an image of the electroporated area. Combining EIT with electroporation could become an important biotechnological and medical technique to introduce therapeutic molecules into cells in tissue at predetermined areas of the body.
机译:电穿孔是通过用电脉冲暂时渗透细胞膜将分子(例如基因构建体或小药)引入细胞的方法。在分子医学和生物技术中,组织电穿孔是通过将电极置于人体目标区域中进行的。当前,与所有其他分子医学方法一样,在进行组织电穿孔时,没有关于电穿孔程度和程度的实时控制或近期信息。本文通过对图像重建算法使用“前跟踪”分析实施新的离体实验数据,扩展了我们先前研究的工作。将实验数据并入电穿孔过程的数值模拟中,并使用新的重建算法生成图像,以证明电阻抗断层扫描(EIT)可以生成电穿孔区域的图像。 EIT与电穿孔相结合可能成为一种重要的生物技术和医学技术,可以将治疗性分子引入人体预定区域的组织细胞中。

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