Frey A H
Randomline Inc., Huntingdon Valley, Pennsylvania 19006.
FASEB J. 1993 Feb 1;7(2):272-81. doi: 10.1096/fasebj.7.2.8440406.
This is a report on Symposia organized by the International Society for Bioelectricity and presented at the 1992 FASEB Meeting. The presentations summarized here were intended to provide a sampling of new and fruitful lines of research. The theme topics for the Symposia were cancer, neural function, cell signaling, pineal gland function, and immune system interactions. Living organisms are complex electrochemical systems that evolved over billions of years in a world with a relatively simple weak magnetic field and with few electromagnetic energy emitters. As is characteristic of living organisms, they interacted with and adapted to this environment of electric and magnetic fields. In recent years there has been a massive introduction of equipment that emits electromagnetic fields in an enormous range of new frequencies, modulations, and intensities. As living organisms have only recently found themselves immersed in this new and virtually ubiquitous environment, they have not had the opportunity to adapt to it. This gives us, as biologists, the opportunity to use these electromagnetic fields as probes to study the functioning of living systems. This is a significant opportunity, as new approaches to studying living systems so often provide the means to make great leaps in science. In recent years, a diversity of biologists have carried out experiments using electromagnetic fields to study the function of living cells and systems. This approach is now becoming quite fruitful and is yielding data that are advancing our knowledge in diverse areas of biology.
这是一份关于由国际生物电学会组织并在1992年美国实验生物学会联合会(FASEB)会议上发表的研讨会的报告。这里总结的报告旨在提供一些新的、富有成果的研究方向的示例。研讨会的主题包括癌症、神经功能、细胞信号传导、松果体功能以及免疫系统相互作用。生物体是复杂的电化学系统,在数十亿年的时间里,在一个具有相对简单的弱磁场且电磁能量发射器较少的世界中进化。作为生物体的特征,它们与这种电磁场环境相互作用并适应了它。近年来,大量新型设备被引入,这些设备能在广泛的新频率、调制方式和强度下发射电磁场。由于生物体直到最近才发现自己置身于这个新的、几乎无处不在的环境中,它们还没有机会适应它。这为我们生物学家提供了一个机会,即利用这些电磁场作为探针来研究生物系统的功能。这是一个重要的机会,因为研究生物系统的新方法常常为科学上的重大飞跃提供手段。近年来,各种各样的生物学家已经开展了使用电磁场来研究活细胞和生物系统功能的实验。这种方法现在正变得相当富有成果,并产生了推动我们在生物学各个领域知识进步的数据。