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首页> 外文期刊>Technology in cancer research & treatment. >Histological and Mathematical Analysis of the Irreversibly Electroporated Liver Tissue
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Histological and Mathematical Analysis of the Irreversibly Electroporated Liver Tissue

机译:不可逆电穿孔肝组织的组织学和数学分析

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摘要

Irreversible electroporation has clinically been used to treat various types of cancer. A plan on how to apply irreversible electroporation before practicing is very important to increase the ablation area and reduce the side effects. Several electrical models have been developed to predict the ablation area with applied electric energy. In this experiment, the static relationship between applied electric energy and ablated area was mathematically and experimentally investigated at 10 hours after applying irreversible electroporation. We performed the irreversible electroporation on the liver tissue of Sprague Dawley rats (male, 8 weeks, weighing 250-350 g). The ablated area was measured based on histological analysis and compared with the mathematical calculation from the electric energy, assuming that the tissue is homogeneous. The ablated area increased with the increase in applied electric energy. The numerically calculated contour lines of electric energy density overlapped well with the apoptotic area induced by the irreversible electroporation. The overlapped area clearly showed that the destructive threshold of apoptosis between electrodes is electric energy density level of 5.9 × 105 J/m3. The results of the present study suggested that the clinical results of the irreversible electroporation on a liver tissue could be predicted through mathematical calculation.
机译:临床上不可逆电穿孔已被用于治疗各种类型的癌症。在练习前如何应用不可逆电穿孔的计划对于增加消融面积和减少副作用非常重要。已经开发了几种电模型来预测外加电能的消融面积。在该实验中,在施加不可逆电穿孔后10小时,对所施加的电能和烧蚀面积之间的静态关系进行了数学和实验研究。我们对Sprague Dawley大鼠(雄性,8周,体重250-350 g)的肝脏组织进行了不可逆的电穿孔。根据组织学分析测量消融面积,并假设组织是均匀的,并与电能的数学计算结果进行比较。烧蚀面积随着施加的电能的增加而增加。数值计算的电能密度轮廓线与不可逆电穿孔诱导的细胞凋亡区域重合。重叠的区域清楚地表明,电极之间的细胞凋亡的破坏性阈值为5.9×10 5 J / m 3 的电能密度水平。本研究的结果表明,可以通过数学计算预测肝组织上不可逆电穿孔的临床结果。

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