Fields Chris, Glazebrook James F, Levin Michael
23 Rue des Lavandières, 11160 Caunes Minervois, France.
Department of Mathematics and Computer Science, Eastern Illinois University, 600 Lincoln Ave, Charleston, IL 61920 USA.
Neurosci Conscious. 2021 Aug 2;2021(2):niab013. doi: 10.1093/nc/niab013. eCollection 2021.
Theories of consciousness and cognition that assume a neural substrate automatically regard phylogenetically basal, nonneural systems as nonconscious and noncognitive. Here, we advance a scale-free characterization of consciousness and cognition that regards basal systems, including synthetic constructs, as not only informative about the structure and function of experience in more complex systems but also as offering distinct advantages for experimental manipulation. Our "minimal physicalist" approach makes no assumptions beyond those of quantum information theory, and hence is applicable from the molecular scale upwards. We show that standard concepts including integrated information, state broadcasting via small-world networks, and hierarchical Bayesian inference emerge naturally in this setting, and that common phenomena including stigmergic memory, perceptual coarse-graining, and attention switching follow directly from the thermodynamic requirements of classical computation. We show that the self-representation that lies at the heart of human autonoetic awareness can be traced as far back as, and serves the same basic functions as, the stress response in bacteria and other basal systems.
那些假定存在神经基质的意识和认知理论,会自动将系统发育上处于基础地位的非神经系统视为无意识和非认知的。在此,我们提出一种无标度的意识和认知特征描述,该描述认为基础系统,包括合成结构,不仅能为更复杂系统中体验的结构和功能提供信息,还在实验操作方面具有独特优势。我们的“最小物理主义”方法除了量子信息理论的假设外不做其他假设,因此适用于从分子尺度向上的范围。我们表明,包括整合信息、通过小世界网络进行状态广播以及分层贝叶斯推理等标准概念在这种情况下自然出现,并且包括stigmergic记忆、感知粗粒化和注意力切换等常见现象直接源于经典计算的热力学要求。我们表明,处于人类自知意识核心的自我表征可以追溯到细菌和其他基础系统中的应激反应,并且具有相同的基本功能。