Foundations of cognitive systems: exploring the architecture of mind and intelligence
摘要
This article investigates the emergence of cognitive systems as properties arising from chemical processes, elucidating how cognitive capabilities evolve through the dynamic progression of these systems. Employing the Dynamic Kinetic Stability (DKS) framework, the study traces the evolutionary trajectory from simple chemical reactions to complex cognitive behaviors, emphasizing the emergence of self-organization, adaptability, and information processing within molecular networks. The research examines the transition from non-living chemical systems to living organisms, offering insights into how basic cognitive mechanisms evolve into advanced neural networks and, ultimately, give rise to human consciousness. The interplay between sensory input and cognitive processes in shaping awareness is analyzed, providing a comprehensive understanding of how experiences are formed and interpreted. By integrating perspectives from evolutionary biology, cognitive science, and philosophy, this study addresses both the "hard problem" and "easy problems" of consciousness, shedding light on the intricate relationship between neurochemical processes and mental phenomena.