Tuszynski Jack A
Department of Oncology, University of Alberta, Edmonton, T6G 1Z2, Alberta, Canada.
Department of Physics, University of Alberta, Edmonton, T6G 2E9, Alberta, Canada.
J Integr Neurosci. 2020 Dec 30;19(4):687-700. doi: 10.31083/j.jin.2020.04.393.
This paper presents a historical overview of quantum physics methodology's development and application to various science fields beyond physics, especially biology and consciousness. Following a successful interpretation of several early 20th century experiments, quantum physics gradually provided a conceptual framework for molecular bonds via quantum chemistry. In recent years individual biological phenomena such as photosynthesis and bird navigation have been experimentally and theoretically analyzed using quantum methods, building conceptual foundations for quantum physics' entry into biology. Quantum concepts have also been recently employed to explain physiology's allometric scaling laws by introducing quantum metabolism theory. In the second part of this work, we discuss how quantum physics may also be pivotal to our understanding of consciousness, which has been touted by some researchers as the last frontier of modern science. Others believe that consciousness does not belong within the realm of science at all. Several hypotheses, especially the Orch OR theory, have been suggested over the past two decades to introduce a scientific basis to consciousness theory. We discuss the merits and potential extensions of these approaches.
本文概述了量子物理方法的发展历程及其在物理学以外的各个科学领域,尤其是生物学和意识领域的应用。在成功解释了20世纪早期的几个实验之后,量子物理通过量子化学逐渐为分子键提供了一个概念框架。近年来,诸如光合作用和鸟类导航等个别生物现象已通过量子方法进行了实验和理论分析,为量子物理进入生物学奠定了概念基础。最近,量子概念还通过引入量子代谢理论被用于解释生理学的异速生长比例定律。在这项工作的第二部分,我们讨论了量子物理对于我们理解意识可能也至关重要,意识被一些研究人员吹捧为现代科学的最后前沿。另一些人则认为意识根本不属于科学领域。在过去二十年里,已经提出了几种假设,特别是“协同客观还原”(Orch OR)理论,为意识理论引入科学基础。我们讨论了这些方法的优点和潜在扩展。