Ho Mae-Wan
Institute of Science in Society , London , UK.
Electromagn Biol Med. 2015;34(2):113-22. doi: 10.3109/15368378.2015.1036079.
The quantum electrodynamics theory of water put forward by Del Giudice and colleagues provides a useful foundation for a new science of water for life. The interaction of light with liquid water generates quantum coherent domains in which the water molecules oscillate between the ground state and an excited state close to the ionizing potential of water. This produces a plasma of almost free electrons favoring redox reactions, the basis of energy metabolism in living organisms. Coherent domains stabilized by surfaces, such as membranes and macromolecules, provide the excited interfacial water that enables photosynthesis to take place, on which most of life on Earth depends. Excited water is the source of superconducting protons for rapid intercommunication within the body. Coherent domains can also trap electromagnetic frequencies from the environment to orchestrate and activate specific biochemical reactions through resonance, a mechanism for the most precise regulation of gene function.
德尔·朱迪切及其同事提出的水的量子电动力学理论为一门关于生命之水的新科学提供了有用的基础。光与液态水的相互作用产生了量子相干域,其中水分子在基态和接近水的电离势的激发态之间振荡。这产生了有利于氧化还原反应的几乎自由电子的等离子体,而氧化还原反应是生物体能量代谢的基础。由诸如膜和大分子等表面稳定的相干域提供了激发的界面水,使光合作用得以发生,而地球上的大多数生命都依赖于光合作用。激发态水是体内快速相互通信的超导电质子的来源。相干域还可以捕获来自环境的电磁频率,通过共振来协调和激活特定的生化反应,这是一种对基因功能进行最精确调节的机制。