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Droplet evaporation method as a new potential approach for highlighting the effectiveness of ultra high dilutions

机译:液滴蒸发法是一种新的潜在方法,可突出超高稀释液的有效性

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Objective: This study sought to verify whether the droplet evaporation method (DEM) can be applied to assess the effectiveness of ultra-high dilutions (UHDs). We studied the shape characteristics of the polycrystalline structures formed during droplet evaporation of wheat seed leakages. Methods: The experimental protocol tested both unstressed seeds and seeds stressed with arsenic trioxide 5. mM, treated with either ultra-high dilutions of the same stressor substance, or with water as a control. The experimental groups were analyzed by DEM and in vitro growth tests. DEM patterns were evaluated for their local connected fractal dimension (measure of complexity) and fluctuating asymmetry (measure of symmetry exactness). Results: Treatment with arsenic at UHD of both stressed and non-stressed seeds increased the local connected fractal dimension levels and bilateral symmetry exactness values in the polycrystalline structures, as compared to the water treatment. The results of in vitro growth tests revealed a stimulating effect of arsenic at UHD vs. control, and a correlation between the changes in growth rate and the crystallographic values of the polycrystalline structures was observed. Conclusions: The results indicate that polycrystalline structures are sensitive to UHDs, and so for the first time provide grounds for the use of DEM as a new tool for testing UHD effectiveness. DEM could find application as a treatment pre-selection tool, or to monitor sample conditions during treatment. Moreover, when applied to biological liquids (such as saliva, blood, blood serum, etc.), DEM might provide information about UHD effectiveness on human and animal health.
机译:目的:本研究旨在验证液滴蒸发法(DEM)是否可用于评估超高稀释液(UHD)的有效性。我们研究了小麦种子泄漏物的液滴蒸发过程中形成的多晶结构的形状特征。方法:本实验规程测试了未胁迫的种子和用5 mM三氧化二砷胁迫过的种子,用相同胁迫源物质的超高稀释液或水作为对照。通过DEM和体外生长测试分析实验组。评估DEM模式的局部连接分形维数(复杂性的度量)和波动的不对称性(对称性准确性的度量)。结果:与水处理相比,用UHD胁迫处理和未处理种子的砷处理均会增加多晶结构中局部连接的分形维数水平和双侧对称精确度值。体外生长测试的结果显示了UHD与对照相比砷具有刺激作用,并且观察到生长速率的变化与多晶结构的晶体学值之间的相关性。结论:结果表明多晶结构对UHD很敏感,因此首次为将DEM用作测试UHD有效性的新工具提供了依据。 DEM可以用作治疗预选工具,或在治疗过程中监控样品状况。而且,当应用于生物液体(如唾液,血液,血清等)时,DEM可能会提供有关UHD对人类和动物健康的有效性的信息。

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