一个无标度的通用关系信息矩阵(n空间)调和了信息问题:n空间作为现实的结构。

Q2 Agricultural and Biological Sciences Communicative and Integrative Biology Pub Date : 2023-01-01 DOI:10.1080/19420889.2023.2193006
William B Miller
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引用次数: 0

摘要

细胞测量是生命系统的一项重要能力,期望被认为是进化创新的重要来源。然而,生物秩序起源的可能性是基于对来自非生物领域的信息测量的提取,这种可能性以前没有被探索过。为了支持这一假设,提出了一个普遍全息关系信息时空矩阵的存在,作为非生物和生物信息系统的无标度统一。在这个框架中,信息是一种普遍的属性,代表着物质和能量之间的相互作用,可以被观察到。由于观测者也是普遍分布的,信息可以被认为是宇宙的基本结构。引入了将这个通用的n空间信息矩阵划分为独立的n空间分区的新概念,作为由马尔可夫毯子和边界定义的信息密度节点,允许它们适用于非生物和生物系统。基于这些n空间分区,非生物系统可以从量子纠缠不对称和单独有界的量子信息参考框架之间的相干性的条件沉降中获得有意义的信息,足以被解释为一种测量形式。这些条件关系是n空间衍生信息域的重复嵌套架构的先驱,这些信息域描述了生命并解释了生物秩序。因此,生物测量和生物n空间划分是对非生物系统中预先存在的信息过程的期望。因此,非生物状态和生物状态调和为基本宇宙信息的不同测量形式。非生物状态和生物状态之间的本质区别在于特定观察者/检测器的属性,从而澄清了自我指涉意识的几个有争议的方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A scale-free universal relational information matrix (N-space) reconciles the information problem: N-space as the fabric of reality.

Cellular measurement is a crucial faculty in living systems, and exaptations are acknowledged as a significant source of evolutionary innovation. However, the possibility that the origin of biological order is predicated on an exaptation of the measurement of information from the abiotic realm has not been previously explored. To support this hypothesis, the existence of a universal holographic relational information space-time matrix is proposed as a scale-free unification of abiotic and biotic information systems. In this framework, information is a universal property representing the interactions between matter and energy that can be subject to observation. Since observers are also universally distributed, information can be deemed the fundamental fabric of the universe. The novel concept of compartmentalizing this universal N-space information matrix into separate N-space partitions as nodes of informational density defined by Markov blankets and boundaries is introduced, permitting their applicability to both abiotic and biotic systems. Based on these N-space partitions, abiotic systems can derive meaningful information from the conditional settlement of quantum entanglement asymmetries and coherences between separately bounded quantum informational reference frames sufficient to be construed as a form of measurement. These conditional relationships are the precursor of the reiterating nested architecture of the N-space-derived information fields that characterize life and account for biological order. Accordingly, biotic measurement and biological N-space partitioning are exaptations of preexisting information processes within abiotic systems. Abiotic and biotic states thereby reconcile as differing forms of measurement of fundamental universal information. The essential difference between abiotic and biotic states lies within the attributes of the specific observer/detectors, thereby clarifying several contentious aspects of self-referential consciousness.

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来源期刊
Communicative and Integrative Biology
Communicative and Integrative Biology Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
3.50
自引率
0.00%
发文量
22
审稿时长
6 weeks
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