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一种分化的物理(电磁)模型。1. 基本考量。

A physical (electromagnetic) model of differentiation. 1. Basic considerations.

作者信息

Nagl W, Popp F A

出版信息

Cytobios. 1983;37(145):45-62.

PMID:6851665
Abstract

There are a number of biological phenomena and events that cannot yet be adequately described, such as cell growth and differentiation, which may be controlled by physical factors. Fröhlich (1980) has discussed the principles of dissipative structures as applied to electromagnetic interactions in relation to basic couplings in biological systems. Recently, increasing evidence of photon storage and ultraweak photon emission from living systems, particularly from DNA, has suggested the concept of an electromagnetic model of differentiation, based on the known quantum optical properties of nucleic acids. This model has the advantage over all ideas so far published, that it is (1) simple; (2) universally applicable to events in living matter, because it is consistent with both the quantum mechanical and the thermodynamic properties on the one hand, and the known biological and biochemical data and phenomena at the other hand; (3) it not only describes the phenomena and events in terms of pure mathematical parameters, but it can also explain them; and (4) it escapes the difficulty of finding basic control mechanisms, which themselves do not need a regulator, ad infinitum.

摘要

有许多生物学现象和事件尚未得到充分描述,比如细胞生长和分化,它们可能受物理因素控制。弗勒利希(1980年)讨论了耗散结构原理,该原理适用于与生物系统中基本耦合相关的电磁相互作用。最近,越来越多关于生物系统,尤其是DNA的光子存储和超弱光子发射的证据,提出了基于核酸已知量子光学特性的分化电磁模型概念。该模型相对于迄今已发表的所有观点具有以下优势:(1)简单;(2)普遍适用于生物物质中的事件,因为它一方面与量子力学和热力学特性一致,另一方面与已知的生物学和生化数据及现象一致;(3)它不仅能用纯数学参数描述现象和事件,还能对其进行解释;(4)它避免了寻找基本控制机制的困难,而这些基本控制机制本身不需要一个无穷无尽的调节器。

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