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电磁场作为生物系统的结构-功能时间信号:形态发生和意识的环境协调。

Electromagnetic fields as structure-function zeitgebers in biological systems: environmental orchestrations of morphogenesis and consciousness.

机构信息

Behavioural Neuroscience Program, Laurentian University Sudbury, ON, Canada ; Department of Psychology, Laurentian University Sudbury, ON, Canada.

Behavioural Neuroscience Program, Laurentian University Sudbury, ON, Canada ; Department of Psychology, Laurentian University Sudbury, ON, Canada ; Department of Biomolecular Sciences, Laurentian University Sudbury, ON, Canada.

出版信息

Front Integr Neurosci. 2014 Nov 7;8:84. doi: 10.3389/fnint.2014.00084. eCollection 2014.

Abstract

Within a cell system structure dictates function. Any interaction between cells, or a cell and its environment, has the potential to have long term implications on the function of a given cell and emerging cell aggregates. The structure and function of cells are continuously subjected to modification by electrical and chemical stimuli. However, biological systems are also subjected to an ever-present influence: the electromagnetic (EM) environment. Biological systems have the potential to be influenced by subtle energies which are exchanged at atomic and subatomic scales as EM phenomena. These energy exchanges have the potential to manifest at higher orders of discourse and affect the output (behavior) of a biological system. Here we describe theoretical and experimental evidence of EM influence on cells and the integration of whole systems. Even weak interactions between EM energies and biological systems display the potential to affect a developing system. We suggest the growing literature of EM effects on biological systems has significant implications to the cell and its functional aggregates.

摘要

在细胞系统中,结构决定功能。细胞之间或细胞与其环境之间的任何相互作用都有可能对特定细胞及其新兴细胞聚集体的功能产生长期影响。细胞的结构和功能不断受到电和化学刺激的修饰。然而,生物系统也受到一种始终存在的影响:电磁(EM)环境。生物系统有可能受到微妙能量的影响,这些能量以 EM 现象的原子和亚原子尺度进行交换。这些能量交换有可能在更高层次的论述中显现出来,并影响生物系统的输出(行为)。在这里,我们描述了关于 EM 对细胞的影响以及整个系统整合的理论和实验证据。即使是 EM 能量与生物系统之间的弱相互作用也有可能影响发育中的系统。我们认为,关于 EM 对生物系统影响的日益增多的文献对细胞及其功能聚集体具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8899/4224074/514d6d6322eb/fnint-08-00084-g0001.jpg

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