Research Center of Advanced Robotics and Environmental Science, CYBRES GmbH, Stuttgart, Germany.
Electromagn Biol Med. 2022 Oct 2;41(4):409-418. doi: 10.1080/15368378.2022.2125527. Epub 2022 Oct 6.
This work explores fluctuations of potentiometric dynamics in environments with different configurations of geomagnetic fields. High-resolution measurements of test liquids are conducted in electromagnetically shielded and thermally stabilized conditions. External measurement environment in two laboratories is modulated by non-conducting/non-magnetic objects of organic and inorganic origins. Totally, 88 experiments in three groups have been conducted during 4 months. The affected dynamics at the level of 10-10 is detected in 93.5%, 82.2% and 74.4% depending on dielectric permittivity of environmental objects. Reaction of potentiometric system has a typical delay of 30-180 minutes. Experiments in both laboratories demonstrated 19% difference of reproducibility rate caused by different background fluctuations. To explain the obtained results, the paper discusses the effects of the Earth's electric and magnetic fields in the form of magnetospheric Poynting vectors or spin-spin forces in geomagnetic field, which affects the productivity of ionic and free-radical reactions. Since the level of aqueous solutions controls various biochemical reactions, this mechanism can explain several biological effects with non-contact signal transmission observed in environmental biology and electromagnetic biophysics.
这项工作探讨了在具有不同地磁场配置的环境中,电动力学波动的情况。在电磁屏蔽和热稳定的条件下,对测试液体进行了高分辨率测量。两个实验室的外部测量环境通过有机和无机来源的非导电/非磁性物体进行调制。总共在四个月内进行了三组 88 次实验。在环境物体介电常数的影响下,在 10-10 水平检测到 93.5%、82.2%和 74.4%的受影响动力学。电位系统的反应具有典型的 30-180 分钟的延迟。两个实验室的实验表明,由于背景波动的不同,再现率的差异为 19%。为了解释所得到的结果,本文讨论了地球电场和磁场以磁层 Poynting 矢量或地磁场中自旋-自旋力的形式对离子和自由基反应的影响。由于水溶液的水平控制着各种生化反应,因此该机制可以解释环境生物学和电磁生物物理学中观察到的非接触信号传输的几种生物学效应。