Brizhik L, Foletti A
Department of Nonlinear Condensed Matter Physics, Bogolyubov Institute for Theoretical Physics, Kyiv, Ukraine.
Department of Innovative Technologies, University of Applied Sciences of Southern Switzerland-SUPSI, Switzerland.
J Biol Regul Homeost Agents. 2014 Jul-Sep;28(3):357-66.
In this paper we discuss living systems as a non-linear self-interacting phenomenon, stabilized by the non-linear interaction between matter and self-created electromagnetic field. Such electromagnetic field can arise, in particular, as the radiation from electrosolitons which mediate the charge transport along macromolecules in metabolic redox processes. The non-linear nature of solitons results in an effective mechanism and leads to the synchronization of redox processes. It allows intra- and intercellular communication and long-range coherence in the system. One peculiar property of solitons is the resonant effect of external weak stimuli on their dynamics, which can explain the mechanism of low-intensity (non-thermal) electromagnetic therapies. We also discuss the stabilizing role of noise and spatial symmetry breaking in living organisms as open dissipative structures far from equilibrium, and health/disease states as the corresponding attractors of the system in the multi-parametric phase diagram. The essential role of electromagnetic potentials in self-regulation and self-healing processes is analyzed, based on the long-range matter-field interaction and fast information transfer, provided by the electromagnetic potentials.
在本文中,我们将生命系统视为一种非线性自相互作用现象,它通过物质与自身产生的电磁场之间的非线性相互作用得以稳定。这种电磁场尤其可以作为电孤子的辐射而出现,电孤子在代谢氧化还原过程中介导沿大分子的电荷传输。孤子的非线性性质导致了一种有效机制,并引发氧化还原过程的同步。它使得细胞内和细胞间能够进行通信,并在系统中实现长程相干。孤子的一个特殊性质是外部微弱刺激对其动力学的共振效应,这可以解释低强度(非热)电磁疗法的机制。我们还讨论了噪声和空间对称性破缺在作为远离平衡的开放耗散结构的生物体中的稳定作用,以及健康/疾病状态作为多参数相图中系统相应吸引子的情况。基于电磁势提供的长程物质 - 场相互作用和快速信息传递,分析了电磁势在自我调节和自我修复过程中的重要作用。