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Numerical:Near-Field Dosimetry for in vitro Experiments at Millimeter Waves

机译:数值:毫米波体外实验的近场剂量测定法

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Progress in millimeter-wave technologies and increasing demand for higher data rate communications have triggered exponential interest to the development of new applications at- millimeter waves. Most of the in vitro laboratory studies in the frequency range 57-64 GHz have demonstrated that cell, homeostasis is not disturbed by these radiations at power densities below the exposure limits (namely 1 mW/cm~2 for the general public and 5 mW/cm~2 for the working population), e.g. [1], [2]. However, it is fundamental to determine power density thresholds corresponding to modifications in cell functioning in order to provide deeper insight into the mechanisms of action of these fields on living systems. These investigations require exposure conditions covering wide range of power densities (at least up to several, tens of mW/cm~2). In this study, we optimize a configuration of aexposure setup for in vitro investigations at 60 GHz with incident power densities up to 57 mW/cm~2. Electromagnetic and thermal dosimetry data are provided.
机译:毫米波技术的进展以及对更高数据速率通信的越来越大的需求引发了对毫米波开发的指数兴趣。频率范围57-64GHz的大多数体外实验室研究表明,细胞,稳态在暴露限值下方的电力密度下没有受到干扰(即,通用公众的1 MW / cm〜2和5 MW / CM〜2为工作人群),例如[1],[2]。然而,确定对应于细胞功能的修改的功率密度阈值是基本的,以便能够深入了解生活系统上这些领域的作用机制。这些调查需要覆盖宽范围的功率密度的暴露条件(至少达到几十MW / cm〜2)。在本研究中,我们优化了在60GHz的体外研究的昂贵研究的配置,其入射功率密度高达57mW / cm〜2。提供了电磁和热量剂量数据。

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