Observation of a 27 Days Periodicity in Melanoma Diagnosis

K. Zioutas, M. Maroudas, S. Hofmann, A. Kryemadhi, E. Matteson
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引用次数: 2

Abstract

Streams from the dark universe may affect biologic processes on Earth including occurrence of cancer. Here, we have recovered complete daily melanoma incidence rates 1982–2014 in Australia. If there is no other external cause for melanoma, its seasonal rate should be steady with a broad maximum during local summertime due to increased solar UV exposure. The reported melanoma cases show instead: (A) a modulation repeating every [Formula: see text] weeks; (B) a time-dependence which relates also with Moon’s geocentric orbital position, while it does not fit concurrently measured solar activity; and (C) a modulation periodicity strikingly coinciding with the Moon’s sidereal periodicity of 27.3 days, which is fixed to remote stars and not to the Sun. These findings show that the associated cause must be of exo-solar origin, and not only due steady solar UV exposure. A possible interpretation of the finding is the underlying working hypothesis itself, namely the flux of slow speed streaming DM is temporally enhanced due to gravitational (self-)focusing by the solar system. Interestingly, the gravitational focusing effect by the Moon itself towards the Earth covers speeds up to [Formula: see text][Formula: see text]km/s, fitting within the widely assumed velocity distribution of DM constituents at [Formula: see text][Formula: see text]km/s. The derived observations for melanoma diagnosis are a novel model-independent finding with potential public health implications and possible relevance for other diseases. The results of this work also serve as accumulating and independent signatures strengthening previous physics claims being at work at the Sun and Earth’s upper atmosphere, inspiring a novel cross-disciplinary approach for the dark matter (DM) paradigm. In future, the 27.3 days periodicity does not necessarily require long-term physical and medical measurements to search for a direct cause-effect relationship. Potential candidates from the dark sector are the highly ionizing anti-quark nuggets, magnetic monopoles, but also particles like dark photons; other as yet unpredicted DM constituents with sufficient impact on the highly sensitive living matter could be at work.
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黑色素瘤诊断27天周期的观察
来自黑暗宇宙的溪流可能会影响地球上的生物过程,包括癌症的发生。在这里,我们已经完全恢复了澳大利亚1982-2014年的每日黑色素瘤发病率。如果没有其他外部原因导致黑色素瘤,其季节性发病率应该是稳定的,在当地夏季,由于太阳紫外线照射的增加,发病率应该达到最大值。相反,报告的黑色素瘤病例显示:(A)每[公式:见正文]周重复一次调节;(B) 时间依赖性也与月球的地心轨道位置有关,但它不适合同时测量的太阳活动;和(C)调制周期与月球27.3天的恒星周期惊人地重合,后者固定在遥远的恒星上,而不是太阳上。这些发现表明,相关的原因一定是太阳系外的,而不仅仅是由于稳定的太阳紫外线照射。对这一发现的一种可能解释是潜在的工作假设本身,即由于太阳系的引力(自)聚焦,低速流动DM的通量在时间上增强。有趣的是,月球本身对地球的引力聚焦效应覆盖了高达[公式:见正文][公式:见文本]km/s的速度,符合人们普遍认为的DM成分在[公式:参见文本][公式:参见正文]km/s下的速度分布。黑素瘤诊断的衍生观察结果是一个新的独立于模型的发现,具有潜在的公共卫生意义,并可能与其他疾病相关。这项工作的结果也作为积累和独立的特征,加强了之前在太阳和地球高层大气中发挥作用的物理学主张,激发了一种新的暗物质(DM)范式的跨学科方法。未来,27.3天的周期不一定需要长期的物理和医学测量来寻找直接的因果关系。来自暗区的潜在候选者是高度电离的反夸克核、磁单极子,还有像暗光子这样的粒子;对高度敏感的生物物质具有足够影响的其他尚未预测的DM成分可能正在发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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