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量子力学预测了进化生物学。

Quantum Mechanics predicts evolutionary biology.

机构信息

Department of Pediatrics, Harbor-UCLA Medical Center, 1224 W.Carson Street, Torrance, CA 90502, United States.

出版信息

Prog Biophys Mol Biol. 2018 Jul;135:11-15. doi: 10.1016/j.pbiomolbio.2018.01.003. Epub 2018 Jan 11.

Abstract

Nowhere are the shortcomings of conventional descriptive biology more evident than in the literature on Quantum Biology. In the on-going effort to apply Quantum Mechanics to evolutionary biology, merging Quantum Mechanics with the fundamentals of evolution as the First Principles of Physiology-namely negentropy, chemiosmosis and homeostasis-offers an authentic opportunity to understand how and why physics constitutes the basic principles of biology. Negentropy and chemiosmosis confer determinism on the unicell, whereas homeostasis constitutes Free Will because it offers a probabilistic range of physiologic set points. Similarly, on this basis several principles of Quantum Mechanics also apply directly to biology. The Pauli Exclusion Principle is both deterministic and probabilistic, whereas non-localization and the Heisenberg Uncertainty Principle are both probabilistic, providing the long-sought after ontologic and causal continuum from physics to biology and evolution as the holistic integration recognized as consciousness for the first time.

摘要

在量子生物学文献中,传统描述性生物学的缺点再明显不过了。在将量子力学应用于进化生物学的持续努力中,将量子力学与进化的基本原理——负熵、化学渗透和内稳态——结合起来作为生理学的第一原理,为理解物理学如何以及为何构成生物学的基本原理提供了一个真正的机会。负熵和化学渗透使单细胞具有决定性,而内稳态构成了自由意志,因为它提供了生理设定点的概率范围。同样,在此基础上,量子力学的几个原理也直接适用于生物学。泡利不相容原理既是确定性的又是概率性的,而非定域性和海森堡不确定性原理都是概率性的,为从物理学到生物学和进化的整体整合提供了长期以来一直在寻找的本体论和因果连续统,这种整体整合首次被认为是意识。

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