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首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Search for tumor-specific frequencies of amplitude-modulated 27 MHz electromagnetic fields in mice with hepatocarcinoma xenografted tumors
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Search for tumor-specific frequencies of amplitude-modulated 27 MHz electromagnetic fields in mice with hepatocarcinoma xenografted tumors

机译:搜索肝癌异种移植肿瘤小鼠振幅调制的27MHz电磁场的肿瘤特异性频率

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Aim: The Pasche research group has reported that tumor-specific electromagnetic field frequencies have physiological and potential anti-tumor effects in cells, animals, and humans. Our aim was to investigate whether these fields have similar effects on physiological parameters in murine tumor models. Methods: Human HuH7 or HEPG2 cells were implanted in the right flank of 8-week-old female RAG gamma 2 C immunodeficient mice. An oximeter was used to record systolic blood pressure (pulse) in free-roaming conscious mice. Mice pulses were recorded and analyzed using a in-house software that also controlled the low-frequency generator for modulating the 27.12 MHz carrier wave at selected frequencies. Results: We performed exposures using both systematic scans at low frequencies and at the pre-determined frequencies reported by the Pasche group as altering both pulse and tumor growth in humans. Those exposures produced no detectable change in physiological parameters of tumor-bearing mice. Conclusion: No tumor-related frequencies were found, neither using systematic scans of frequencies nor published specific frequencies. There might obviously be differences between animal and human models, but our approach did not confirm the physiological data of the human Pasche group data.
机译:目的:Pasche研究组据报道,肿瘤特异性电磁场频率在细胞,动物和人体中具有生理和潜在的抗肿瘤作用。我们的目标是调查这些领域是否对鼠肿瘤模型的生理参数具有类似的影响。方法:将人HUH7或HEPG2细胞植入8周龄雌性RAGγ2c免疫缺陷小鼠的右侧。用于在自由漫游意识的小鼠中记录收缩表血压(脉冲)。使用内部软件记录和分析小鼠脉冲,该软件也控制了低频发生器以在所选频率下调制27.12MHz载波。结果:我们在低频下的系统扫描和Pasche组报告的预定频率下进行了曝光,以改变人类的脉冲和肿瘤生长。这些曝光不会产生肿瘤小鼠的生理参数的可检测变化。结论:没有发现肿瘤相关频率,既不使用频率的系统扫描也不发布特定频率。动物和人类模型可能显然可能存在差异,但我们的方法并未确认人帕斯基集团数据的生理数据。

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