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首页> 外文期刊>Bioelectromagnetics. >Effects of continuous and intermittent exposure to RF fields with a wide range of SARs on cell growth, survival, and cell cycle distribution.
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Effects of continuous and intermittent exposure to RF fields with a wide range of SARs on cell growth, survival, and cell cycle distribution.

机译:连续和间歇性暴露于具有多种SAR的RF场对细胞生长,存活和细胞周期分布的影响。

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摘要

To examine the biological effects of radio frequency (RF) electromagnetic fields in vitro, we have examined the fundamental cellular responses, such as cell growth, survival, and cell cycle distribution, following exposure to a wide range of specific absorption rates (SAR). Furthermore, we compared the effects of continuous and intermittent exposure at high SARs. An RF electromagnetic field exposure unit operating at a frequency of 2.45 GHz was used to expose cells to SARs from 0.05 to 1500 W/kg. When cells were exposed to a continuous RF field at SARs from 0.05 to 100 W/kg for 2 h, cellular growth rate, survival, and cell cycle distribution were not affected. At 200 W/kg, the cell growth rate was suppressed and cell survival decreased. When the cells were exposed to an intermittent RF field at 300 W/kg(pk), 900 W/kg(pk) and 1500 W/kg(pk) (100 W/kg(mean)), no significant differences were observed between these conditions and intermittent wave exposure at 100 W/kg. When cells were exposed to a SAR of 50W/kg for 2 h, the temperature of the medium around cells rose to 39.1 degrees C, 100 W/kg exposure increased the temperature to 41.0 degrees C, and 200 W/kg exposure increased the temperature to 44.1 degrees C. Exposure to RF radiation results in heating of the medium, and the thermal effect depends on the mean SAR. Hence, these results suggest that the proliferation disorder is caused by the thermal effect.
机译:为了检查体外射频(RF)电磁场的生物学效应,我们在暴露于各种比吸收率(SAR)后检查了基本的细胞反应,例如细胞生长,存活和细胞周期分布。此外,我们比较了高SAR下连续和间歇暴露的影响。使用工作在2.45 GHz频率下的RF电磁场暴露单元将细胞暴露于0.05至1500 W / kg的SAR。当细胞以SAR从0.05到100 W / kg的连续RF场暴露2 h时,细胞生长速率,存活率和细胞周期分布均不受影响。在200 W / kg时,细胞生长速率受到抑制,细胞存活率降低。当细胞暴露于300 W / kg(pk),900 W / kg(pk)和1500 W / kg(pk)(100 W / kg(平均值))的间歇性RF场时,没有观察到显着差异这些条件和100 W / kg的间歇波暴露。当细胞暴露于50W / kg的SAR下2小时时,细胞周围培养基的温度升至39.1摄氏度,暴露于100 W / kg的温度使温度升至41.0摄氏度,暴露于200 W / kg的温度使温度升高至44.1摄氏度。暴露于RF辐射会导致介质发热,并且热效应取决于平均SAR。因此,这些结果表明,增殖紊乱是由热效应引起的。

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