Gu Q, Popp F A
International Institute of Biophysics, Technology Center, Kaiserslautern, Federal Republic of Germany.
Experientia. 1992 Dec 1;48(11-12):1069-82. doi: 10.1007/BF01947994.
By considering an exciplex system consisting of collective molecules in interaction with both the 'pumping' fields and the biophoton fields, the two-level exciplex model and the three-level exciplex model are presented. They are useful for the investigation of the quasi-stationary behaviour of biophoton emission, and biophoton emission as a dynamic process in the presence of external perturbations. Our theoretical results predict a series of nonlinear effects, such as chaos, fractal behaviour, and non-equilibrium phase transition. These effects characterize the coherence nature of living systems. In our approaches, there are two important quantities f and x, which can be used to mark the working points of the two-level and three-level exciplex systems. All the influences of external perturbations on the exciplex systems, e.g. change of temperature, the addition of agents, exposure to light, etc., can be interpreted as shifts of the working points of the systems, leading to a diversity of nonlinear response of biophoton emission. In addition, the agreements of the theoretical results and the corresponding experimental observations on biophoton emission from biological systems in the presence of external perturbations are demonstrated.
通过考虑一个由与“泵浦”场和生物光子场相互作用的集体分子组成的激基复合物系统,提出了二能级激基复合物模型和三能级激基复合物模型。它们对于研究生物光子发射的准静态行为以及在外部扰动存在下作为动态过程的生物光子发射很有用。我们的理论结果预测了一系列非线性效应,如混沌、分形行为和非平衡相变。这些效应表征了生命系统的相干性质。在我们的方法中,有两个重要的量f和x,可用于标记二能级和三能级激基复合物系统的工作点。外部扰动对激基复合物系统的所有影响,例如温度变化、添加试剂、光照等,都可以解释为系统工作点的移动,导致生物光子发射的非线性响应的多样性。此外,还展示了理论结果与在外部扰动存在下生物系统生物光子发射的相应实验观察结果的一致性。