From reactions to reflection: A recursive framework for the evolution of cognition and complexity.
Bio Systems April 1, 2025 DOI: 10.1016/j.biosystems.2025.105408 via PubMed
Summary
AI-generated from the abstractConsciousness evolves through a continuum of recursive processes: reaction, temporogenesis, symbiogenesis, and cognogenesis. Reaction enables adaptive responses to stimuli; recursive refinement leads to temporogenesis, synchronizing internal processes with external rhythms. Symbiogenesis fosters cooperative interactions across biological levels, enabling higher-order cognition. Cognogenesis culminates in self-awareness and intentionality through iterative feedback loops. The framework proposes that subjective experience emerges from progressively complex recursive interactions, not as a static phenomenon. It compares with Integrated Information Theory, Global Workspace Theory, and enactive cognition, situating consciousness in an evolutionary and biological context, and offers avenues for neuroscience, evolutionary biology, and artificial intelligence.
Study at a glance
| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Keywords | Biological cooperation Cognogenesis Complexity emergence Consciousness evolution Recursion |
| Key finding | Consciousness emerges from a continuum of recursive processes—reaction, temporogenesis, symbiogenesis, and cognogenesis—rather than as a static or isolated phenomenon. |
Abstract
This paper presents a comprehensive framework that traces the evolution of consciousness through a continuum of recursive processes spanning reaction, temporogenesis, symbiogenesis, and cognogenesis. By integrating biological cooperation, temporal structuring, and self-referential processing, our model provides a novel perspective on how complexity emerges and scales across evolutionary time. Reaction is established as the foundational mechanism that enables adaptive responses to environmental stimuli, which, through recursive refinement, transitions into temporogenesis-the synchronization of internal processes with external temporal rhythms. Symbiogenesis further enhances this process by fostering cooperative interactions at multiple biological levels, facilitating the emergence of higher-order cognitive functions. Cognogenesis represents the culmination of these recursive processes, where self-awareness and intentionality arise through iterative feedback loops. Our framework offers a biologically grounded pathway to addressing the "hard problem" of consciousness by proposing that subjective experience emerges as a result of progressively complex recursive interactions rather than as a static or isolated phenomenon. In comparing our approach with established theories such as Integrated Information Theory, Global Workspace Theory, and enactive cognition, we highlight its unique contributions in situating consciousness within a broader evolutionary and biological context. This work aims to provide a foundational model that bridges the gap between reaction and reflection, offering empirical avenues for further exploration in neuroscience, evolutionary biology, and artificial intelligence.