首页> 外文OA文献 >ALTERNATIVE MEDICINE TECHNIQUES HAVE NON-LINEAR EFFECTS ON RADIATION RESPONSE AND CAN ALTER THE EXPRESSION OF RADIATION INDUCED BYSTANDER EFFECTS
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ALTERNATIVE MEDICINE TECHNIQUES HAVE NON-LINEAR EFFECTS ON RADIATION RESPONSE AND CAN ALTER THE EXPRESSION OF RADIATION INDUCED BYSTANDER EFFECTS

机译:替代医学技术对辐射反应具有非线性效应,并且可以改变由吸收效应引起的辐射表达

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摘要

Many so-called “alternative medicine” techniques such as Reiki and acupuncture produce very good outcomes for intractable pain and other chronic illnesses but the efficacy is often dismissed as being psychosomatic. However a plausible mechanism does exist i.e. that the treatments alter the electromagnetic fields in living organisms and thereby prevent or reduce activity of neurons which lead to the pain. Low doses of ionising radiation have similar effects on electromagnetic fields and are known to induce signaling cascades in tissues due to ion gradients. To test this hypothesis cell cultures were exposed to Reiki – like and to acupuncture – like treatments, both performed by qualified practitioners. The cells were exposed either before or after the treatment to x-rays and were monitored for production of direct damage or bystander signals. The data suggest that the alternative techniques altered the response of cells to direct irradiation and altered bystander signal mechanisms. We conclude that alternative medicine techniques involving electromagnetic perturbations may modify the response of cells to ionizing radiation. In addition to the obvious implications for mechanistic studies of low dose effects, this could provide a novel target to exploit in radiation protection and in optimizing therapeutic gain during radiotherapy.
机译:许多所谓的“替代医学”技术,例如灵气疗法和针灸疗法,对于顽固性疼痛和其他慢性疾病均能产生很好的疗效,但其疗效常因心身原因而被忽视。然而,确实存在合理的机制,即治疗改变了活生物体中的电磁场,从而防止或减少了导致疼痛的神经元的活动。低剂量的电离辐射对电磁场具有类似的影响,并且已知由于离子梯度会在组织中引起信号传导级联。为了验证这一假设,将细胞培养物置于合格的从业人员进行的灵气疗法(如针灸疗法)和类似的治疗中。在处理之前或之后,将细胞暴露于X射线,并监测直接损伤或旁观者信号的产生。数据表明,替代技术改变了细胞对直接照射的反应,并改变了旁观者的信号机制。我们得出结论,涉及电磁扰动的替代医学技术可能会改变细胞对电离辐射的响应。除了对低剂量效应的机理研究有明显的意义外,这还可以提供一个新的靶标,用于放射防护和放疗期间优化治疗效果。

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