Mechanical Engineering Research Institute of Russian Academy of Sciences, 101990, Moscow, M. Kharitonievskiy pereulok, 4, Russia.
Biosystems. 2022 Aug;218:104712. doi: 10.1016/j.biosystems.2022.104712. Epub 2022 May 30.
The article is devoted to the possibilities of considering the evolution of biological systems in connection with the unique emergent properties of antenna arrays, that is, systems of mutually matched antennas widely used in technology. Materials are presented in favor of the proposition that the evolution of biosystems can be formally considered as the evolution of systems of bio-antenna arrays and their energy-information wave activity, which participates in biological computation and contributes to the unification of body parts into a coherent whole. The use of digital antenna arrays in technology is based on their tensor-matrix theory. The author discovers a structural analogy of this theory with the tensor-matrix features of genetic coding systems, as well as algebraic modeling of the universal rules for the stochastic DNA organization of the genomes of higher and lower organisms. This analogy is just one of the facts presented in the article in favor of the usefulness of borrowing knowledge from modern antenna technology to consider the evolution of biosystems. The described new approach may exist along with other known approaches in evolutionary biology.
本文致力于探讨将生物系统的进化与天线阵列的独特涌现特性联系起来的可能性,即广泛应用于技术中的互适天线系统。本文提出了一些材料,支持这样的观点,即生物系统的进化可以被正式视为生物天线阵列系统及其能量信息波活动的进化,这些系统参与生物计算,并有助于将身体各部分统一成一个连贯的整体。数字天线阵列在技术中的应用基于其张量矩阵理论。作者发现该理论与遗传编码系统的张量矩阵特征以及高等和低等生物基因组的随机 DNA 组织的通用规则的代数建模之间存在结构上的类似性。这种类比只是本文提出的支持从现代天线技术中借用知识来考虑生物系统进化的有用性的众多事实之一。所描述的新方法可能与进化生物学中其他已知方法并存。