Skip to content
Shadow Theory

Relational development Section 14

References and access record

Reading position 15 of 15

14 References and access record

14.1 Programme publications

M. Rodgers, J. (2026). Shadow Theory and Consciousness: Awareness, Perspectival Realization, and the Source-to-Experience Problem. SPC-2, version 2, publication edition, 20 September. Zenodo. doi:10.5281/zenodo.22853774.

P2. Rodgers, J. (2026). Relational Boundaries and Awareness Localization: Robustness, Composition, and Identification Limits. Version 1.0, 29 September. Zenodo. doi:10.5281/zenodo.23075822. Relevant anchors: P2-16–P2-19, P2-21–P2-22, P2-32–P2-33 and the hierarchical relational construction.

P3. Rodgers, J. (2026). Learning Effective Interfaces from Opaque Stochastic Systems: Capacity, Selection, and Validation Limits. Revised preprint version 2, 29 September. Zenodo. doi:10.5281/zenodo.23075824.

P4. Rodgers, J. (2026). Identifying Binary Realizations from Intervention Laws: Certificates, Recoding Obstructions, and a Bounded SPC-2/IIT Comparison. Version 1.1-RC1, 30 September. Zenodo. doi:10.5281/zenodo.23075828. The cited source retains a separate pending supporting-archive reference; that historical archive is not reproduced here.

14.2 External primary sources

L1. Tronick, E. Z., et al. (1998). Dyadically expanded states of consciousness and the process of therapeutic change. Infant Mental Health Journal, 19(3), 290–299. Publisher record and abstract. DOI: 10.1002/(SICI)1097-0355(199823)19:3<290::AID-IMHJ4>3.0.CO;2-Q. Scope: metadata and abstract, not full article.

L2. De Jaegher, H., and Di Paolo, E. (2007). Participatory sense-making: An enactive approach to social cognition. Phenomenology and the Cognitive Sciences, 6, 485–507. DOI: 10.1007/s11097-007-9076-9. Author-hosted full text. Scope: full text available; abstract and relevant autonomy, embodiment and interaction passages consulted.

L3. Clark, A., and Chalmers, D. J. (1998). The extended mind. Analysis, 58(1), 7–19. DOI: 10.1093/analys/58.1.7. Author-hosted text. Scope: full text consulted for external coupling and cognitive participation.

L4. Littman, M. L., Sutton, R. S., and Singh, S. (2002; conference 2001). Predictive representations of state. Advances in Neural Information Processing Systems, 14. Proceedings PDF. Scope: primary full text, predictive-test representation and linear-state results.

L5. Tzeng, W.-G. (1992). A polynomial-time algorithm for the equivalence of probabilistic automata. SIAM Journal on Computing, 21(2), 216–227. Publisher record. DOI: 10.1137/0221017. Scope: metadata and abstract only.

L6. Subramanian, J., Sinha, A., Seraj, R., and Mahajan, A. (2022). Approximate information state for approximate planning and reinforcement learning in partially observed systems. Journal of Machine Learning Research, 23(12), 1–83. Journal PDF. Scope: primary full text, exact/approximate information-state definitions and performance-bound discussion.

L7. Alver, S., and Precup, D. (2023). Minimal value-equivalent partial models for scalable and robust planning in lifelong reinforcement learning. Proceedings of Machine Learning Research, 232, 548–567. Proceedings record. Scope: metadata and abstract.

L8. Russell, S., and Wefald, E. (1991). Principles of metareasoning. Artificial Intelligence, 49(1–3), 361–395. DOI: 10.1016/0004-3702(91)90015-C. Archived opening page. Scope: title, authors, abstract and opening discussion; complete article not retrieved.

L9. Rubenstein, P. K., Weichwald, S., Bongers, S., Mooij, J. M., Janzing, D., Grosse-Wentrup, M., and Schölkopf, B. (2017). Causal consistency of structural equation models. UAI 2017. Author-deposited manuscript. Scope: primary abstract and full-text transformation discussion consulted. Interventions, rather than observational agreement alone, determine the relevant consistency target.

L10. Kretch, K. S., Franchak, J. M., and Adolph, K. E. (2014). Crawling and walking infants see the world differently. Child Development, 85(4), 1503–1518. DOI: 10.1111/cdev.12206. Author-hosted manuscript. Scope: abstract, apparatus/design, selected results and discussion; no raw-data reanalysis. The PDF has 2013 advance-publication formatting.

L11. Ellis, K., et al. (2021). DreamCoder: Bootstrapping inductive program synthesis with wake-sleep library learning. Proceedings of the 42nd ACM SIGPLAN International Conference on Programming Language Design and Implementation (PLDI 2021), 835–850. DOI: 10.1145/3453483.3454080. Primary manuscript. Scope: abstract, architecture, component comparisons and training-cost discussion; no replication.