Zhang Hui, Xu Jiadong, Niu Zhongqi
School of Electronic Information, Northwestern Polytechnic University, Xi'an 710072, China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2007 Apr;24(2):257-61.
The ionic quantity across the channel of the cell membrane decides the cell in a certain life state. The theory analysis that existed on the bio-effects of the electro-magnetic field (EMF) does not unveil the relationship between the EMF exerted on the cell and the ionic quantity across the cell membrane. Based on the cell construction, the existed theory analysis and the experimental results, an ionic probability wave theory is proposed in this paper to explain the biological window-effects of the electromagnetic wave. The theory regards the membrane channel as the periodic potential barrier and gives the physical view of the ion movement across cell-membrane. The theory revises the relationship between ion's energy in cell channel and the frequency exerted EMF. After the application of the concept of the wave function, the ionic probability across the cell membrane is given by the method of the quantum mechanics. The numerical results analyze the physical factors that influences the ion's movement across the cell membrane. These results show that the theory can explain the phenomenon of the biological window-effects.
细胞膜通道上的离子数量决定细胞处于某种生命状态。现有的关于电磁场(EMF)生物效应的理论分析并未揭示施加在细胞上的EMF与跨细胞膜离子数量之间的关系。基于细胞结构、现有理论分析和实验结果,本文提出了一种离子概率波理论来解释电磁波的生物窗口效应。该理论将膜通道视为周期性势垒,并给出了离子跨细胞膜运动的物理观点。该理论修正了细胞通道中离子能量与施加的EMF频率之间的关系。应用波函数概念后,采用量子力学方法给出了跨细胞膜的离子概率。数值结果分析了影响离子跨细胞膜运动的物理因素。这些结果表明该理论能够解释生物窗口效应现象。