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High power electromagnetic pulse applicators for evaluation of biological effects induced by electromagnetic radiation waves

机译:大功率电磁脉冲施加器,用于评估电磁辐射波引起的生物效应

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The effects of electromagnetic radiation waves on health is one of the major public concerns. These waves are mainly produced at a large scale but it is important to evaluate these effects on biological samples at the laboratory scale. Here we developed a set of micro applicators, which allow evaluating the effect of electromagnetic fields on biological samples with volumes in the microliter range. The applicators can be coupled to an optical microscope and allow a real-time observation of potential structural and functional alterations of the tested sample induced by different waveforms. New design approaches are suggested to simultaneously achieve maximized electric field coupling effect and optimized electric field homogeneity in the tested sample, while minimizing the return loss when the applicators are loaded with the biological samples. These applicators allow studying the biological effect of a variety of different signals, due to their wide frequency bandwidth (beyond 1.5 GHz) and their high permissible power. In addition, different electromagnetic parameters such as the electromagnetic field magnitude, pulse repetitive factor, number of bursts or delay between bursts may be set. The efficacy of the applicators was addressed for three different signals: two types of electromagnetic waves – a damped sinusoid centered at 200 MHz (wide band signal), a radar-like signal at 1.5 GHz (the ultra-narrow band signal) and a train of millisecond square-wave monopolar electric field pulses (causing electroporation). The biological effects were thus assessed (at the microscopic scale) on two different biological models, the giant unilamellar vesicles, and tumor and normal human cells, as well as being compared to results obtained (at full scale) with signals generated by antennas.
机译:电磁辐射波对健康的影响是公众关注的主要问题之一。这些波浪主要是大规模产生的,但重要的是要在实验室规模评估这些对生物样品的影响。在这里,我们开发了一套微型施加器,可以评估电磁场对体积在微升范围内的生物样品的影响。可以将施加器连接到光学显微镜,并允许实时观察由不同波形引起的被测样品的潜在结构和功能变化。建议采用新的设计方法,同时在被测样品中实现最大的电场耦合效果和优化的电场均匀性,同时最大程度地减少在施加器中装载生物样品时的回波损耗。由于其宽的带宽(超过1.5 GHz)和高的允许功率,这些施加器允许研究各种不同信号的生物效应。另外,可以设置不同的电磁参数,例如电磁场大小,脉冲重复因子,脉冲串数或脉冲串之间的延迟。施加器的功效针对三种不同的信号进行了处理:两种电磁波–以200 MHz为中心的阻尼正弦波(宽带信号),1.5 GHz的类似雷达的信号(超窄带信号)和火车毫秒方波单极电场脉冲(导致电穿孔)。因此,在两种不同的生物学模型,巨大的单层囊泡,肿瘤细胞和正常人细胞上(在微观尺度上)评估了生物学效应,并将其与通过天线产生的信号获得的(满幅)结果进行了比较。

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