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高稀释提取物与水在玻璃界面上的相互作用。

Interactions of Highly Diluted Extract with Water Across Glass Interfaces.

作者信息

Jerman Igor, Ogrizek Linda, Pihir Jonatan, Senica Mateja

机构信息

BION Institute, Stegne 21, 1000 Ljubljana, Slovenia.

出版信息

Int J Mol Sci. 2025 Jan 27;26(3):1115. doi: 10.3390/ijms26031115.

Abstract

This study explores the physicochemical changes provoked by the physical transmission of highly diluted (HD) solutions of extract on three receiver solutions differing by their pH. Three dilutions (potencies), one modest (D6), one very high (C30), and another ultra-high (C200) extract of , were used as a source of HD signal transfer. The HD signal transfer was enhanced by an initial knocking at the start of the experiment and then allowed to interact with the receiver solution for 24 h of exposure. The results confirmed the detectability of the HD signal transfer in solutions with different pH, the general effect of this signal on pH increase, the differential effect of the signal depending on the initial dilution level (potency), and the effect on the decrease in both the electrical voltage in water (ORP) and the conductivity. The overall findings of the study offer valuable new insights and suggest innovative approaches for further research, particularly in detecting the HD signal in solutions with varying pH levels, focusing on interactions with hydroxide and hydronium ions.

摘要

本研究探讨了提取物的高稀释(HD)溶液的物理传递对三种pH值不同的接收溶液所引发的物理化学变化。使用了三种稀释度(效力),即一种适度稀释(D6)、一种非常高稀释度(C30)和另一种超高稀释度(C200)的提取物,作为HD信号传递的来源。在实验开始时通过初始敲击增强HD信号传递,然后使其与接收溶液相互作用24小时。结果证实了在不同pH值的溶液中HD信号传递的可检测性、该信号对pH值升高的总体影响、信号根据初始稀释水平(效力)的差异影响以及对水中电压(ORP)和电导率降低的影响。该研究的总体结果提供了有价值的新见解,并为进一步研究提出了创新方法,特别是在检测不同pH水平溶液中的HD信号方面,重点关注与氢氧根离子和水合氢离子的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d8c/11817096/32d0fcfb5216/ijms-26-01115-g001.jpg

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