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The Effect of Spatially Nonuniform Electromagnetic Field and Antitumor Drugon Growth of Maglinant Tumor

机译:空间非均匀电磁场和抗肿瘤药的作用对恶性肿瘤生长的影响

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The effect of spatially nonuniform electromagnetic field on transformation of radio waves and thermal descriptions in phantoms and malignant tumour during electromagnetic irradiation was investigated. It is shown that the structure of heat formation on the surface of phantoms depends on the degree of nonuniformity of electromagnetic field (EF) and it is similar to computed EF distribution. Output descriptions of magnetic component after EF transformation in a phantom more depended on phantom' size and spatial heterogeneity than electric component. The treatment of experimental animals was carried out with DOXO in the dose 1.5 mg/kg. The animal tumors were exposed by EF with the frequency 40 MHz inside using two types of loop elliptic applicators. First type of applicator with straight profile (ASP) had small asymmetry of electric component aF = - 0.03 a.u., magnetic component an =0.16 a.u. and specific adsorption rate (SAR) = 8.8 W/kg. Second type with the circular arc in profile (ACAP) had increased asymmetry of EF aE = 0.89 a.u., aH = 0.48 a.u. and SAR = 1.6 W/kg. The temperature inside tumor was nonlinearly increased up to 39.1°C during IS min electromagnetic irradiation (El) by ASP and up to 37.9°C with the use of ACAP. Animals were housed in 4 groups: 1 - control (no treatment); 2 - DOXO-administration; 3 - DOXO-administration + El by ASP; 4 - DOXO-administration + El by ACAP. The maximal inhomogeneity in thermograms' structure of tumor surface visualized after El by EF with increased asymmetry. Since 14th day after tumor transplantation the tumor volumes for animals from 4 group was statistically significant decreased in comparison with the animals of 1, 2 and 3 groups on 88%, 79% and 82% (p < 0.05) accordingly in average. At the same time, the complete resorption on 20th day after tumor transplantation for 40% animals from 4 group were observed.
机译:研究了空间不均匀的电磁场对电磁波辐射过程中体模和恶性肿瘤中无线电波变换和热描述的影响。结果表明,体模表面的热形成结构取决于电磁场(EF)的不均匀程度,与计算出的EF分布相似。幻像中的EF变换后的磁性成分的输出描述比电子成分更依赖于幻像的大小和空间异质性。用剂量为1.5mg / kg的DOXO进行实验动物的治疗。使用两种类型的环形椭圆形涂药器以40 MHz的频率通过EF将动物肿瘤暴露在内部。第一种具有直线轮廓(ASP)的施加器具有小的不对称性,其电子分量aF = -0.03a.u,磁性分量an = 0.16a.u。比吸收率(SAR)= 8.8 W / kg。轮廓为圆弧的第二种类型(ACAP)的不对称度增加了EF aE = 0.89 a.u.,aH = 0.48 a.u. SAR = 1.6 W / kg。在使用ASP进行IS min电磁辐射(El)期间,肿瘤内部的温度非线性升高至39.1°C,而使用ACAP则使肿瘤内部的温度非线性升高至37.9°C。将动物分为4组:1-对照(未治疗); 1-对照(未处理); 1-对照(未处理)。 2-DOXO管理; 3-DOXO管理+ El(通过ASP); 4-ACAP的DOXO管理+ El。 EF增加后,通过不对称性增加,可以看到肿瘤表面热像图结构的最大不均匀性。自肿瘤移植后第14天起,与1、2和3组动物相比,第4组动物的肿瘤体积统计上显着减少,分别平均为88%,79%和82%(p <0.05)。同时,观察到肿瘤移植后第20天,来自4组的40%动物的完全吸收。

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