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The Impact of a Direct Magnetic Field on the Cells

机译:直接磁场对细胞的影响

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Many experimental studies have been conducted, which have proven the positive effects of the magnetic field on animals, humans, plants and their seeds. But there is no theory to explain the physical process of the impact of the magnetic field on biological objects, so not all active factors have been established and their optimal values have not been determined. Under the influence of the magnetic field changes the rate of reactions that occur in the cell. This changes the degree of electrolytic dissociation of salts, pH and redox potential of the cell solution. The permeability of cell membranes increases in the magnetic field, which leads to increased diffusion of oxygen and water molecules, as well as ion transport. Increasing the concentration of oxygen in the cells reduces the incidence. Magnetic induction is the main factor in magnetic treatment. and the velocity in the magnetic field and its gradient are less significant factors. Based on theoretical and experimental studies, the most effective method of biological objects treatment in a magnetic field is determined: magnetic induction 0.065 T, fourfold remagnetization, magnetic field gradient 0.57 T/m and velocity of motion in a magnetic field 0.4 m/s.
机译:已经进行了许多实验研究,已经证明了磁场对动物,人类,植物及其种子的积极影响。但是,没有理论来解释磁场对生物物体的影响的物理过程,因此并非所有活性因子都已经建立,并且还没有确定它们的最佳值。在磁场的影响下,细胞中发生的反应速率发生变化。这会改变盐的电解解离度,细胞溶液的pH值和氧化还原电位。细胞膜的渗透性在磁场中增加,这导致氧和水分子的扩散增加以及离子迁移。增加细胞中氧气的浓度可减少发生率。磁感应是进行磁处理的主要因素。磁场中的速度及其梯度是次要因素。根据理论和实验研究,确定了在磁场中处理生物物体的最有效方法:磁感应强度为0.065 T,四重磁化,磁场梯度为0.57 T / m,磁场中的运动速度为0.4 m / s。

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